Envenenamiento Químico
Sinopsis
El envenenamiento químico ocurre cuando sustancias dañinas—como productos químicos industriales, pesticidas, limpiadores domésticos, metales pesados o productos farmacéuticos—ingresan al cuerpo y causan daño a órganos, tejidos o procesos metabólicos. La exposición puede ocurrir a través de inhalación, ingestión, contacto con la piel o inyección, dando lugar a efectos agudos o crónicos en la salud dependiendo de la sustancia, la cantidad y la duración de la exposición.
El envenenamiento químico puede afectar múltiples sistemas del cuerpo, incluyendo los sistemas nervioso, respiratorio, digestivo, cardiovascular e inmunológico. Los síntomas varían ampliamente según el producto químico involucrado, pero con frecuencia incluyen náuseas, vómitos, mareos, dolores de cabeza, dificultad respiratoria, irritación de la piel, síntomas neurológicos o incluso falla orgánica en casos graves.
Las fuentes comunes incluyen entornos laborales (fábricas, laboratorios), alimentos o agua contaminados, productos domésticos y sobredosis accidentales. La identificación y eliminación inmediata de la fuente de la toxina son cruciales para prevenir daños mayores.
Tipos de Envenenamiento Químico:
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Envenenamiento Agudo: Aparición rápida tras una única exposición de alto nivel (p. ej., ingestión de pesticidas).
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Envenenamiento Crónico: Se desarrolla con el tiempo con exposición repetida o continua a niveles bajos de productos químicos (p. ej., metales pesados como el plomo o el mercurio).
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Exposición Localizada: Afecta la piel, los ojos o los pulmones en el sitio de contacto.
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Envenenamiento Sistémico: Las toxinas absorbidas en el torrente sanguíneo afectan múltiples órganos (p. ej., hígado, riñones, cerebro).
Causas Comunes:
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Pesticidas o herbicidas
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Productos químicos industriales (p. ej., solventes, metales pesados)
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Productos de limpieza domésticos (p. ej., lejía, amoníaco)
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Medicamentos (sobredosis o uso inadecuado)
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Agua o alimentos contaminados
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Gases o vapores tóxicos (p. ej., monóxido de carbono)
Factores de Gravedad:
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Tipo y concentración del producto químico
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Vía de exposición (inhalación, ingestión, contacto con la piel)
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Duración de la exposición
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Estado de salud individual (edad, función hepática/renal, estado inmunológico)
Cuándo Consultar a un Médico:
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Cualquier envenenamiento sospechado o exposición química con síntomas
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Dificultad para respirar, dolor en el pecho o dificultad respiratoria
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Confusión, convulsiones, pérdida del conocimiento o dolores de cabeza intensos
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Náuseas persistentes, vómitos, dolor abdominal o diarrea
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Signos de falla orgánica (p. ej., ictericia, reducción de la producción de orina)
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Si la exposición involucra sustancias corrosivas (p. ej., ácidos, álcalis)
Remedios Naturales
Ingredientes
- AcaciaCientífico
Acacia gum has demonstrated hepatoprotective activity in human trials: a Phase II RCT in rheumatoid arthritis patients showed that 30 g/day for 12 weeks significantly reduced liver enzymes and improved albumin levels. Antioxidant enzyme activity (superoxide dismutase, catalase, glutathione peroxidase) in liver tissue is also increased by gum arabic supplementation, as documented in a systematic review of clinical trials.
- Frijol adzukiCientífico
Adzuki bean extract protects against acetaminophen- and D-galactosamine-induced liver damage in rats by upregulating hepatic antioxidant enzymes (glutathione peroxidase, glutathione reductase, SOD). Multiple HFD studies show adzuki bean reduces hepatic steatosis, ALT, and AST. Animal evidence is consistent; human liver data are limited.
- AgrimoniaCientífico
Agrimony has the strongest human evidence of any of its indications for liver health. A 2018 randomised, double-blind, placebo-controlled trial (Cho et al.) in 69 subjects with elevated ALT found significant reductions in ALT and AST after 8 weeks of agrimony extract. Traditional use for liver conditions is extensively documented across European folk medicine.
- ajwainCientífico
Hepatoprotective activity of ajwain extract has been demonstrated in animal models, including protection against paracetamol-induced liver damage. This effect has been consistently cited in pharmacological reviews as one of the key scientifically characterized properties of T. ammi. No human liver studies exist.
- Akkermansia muciniphilaCientífico
A. muciniphila reduces hepatic steatosis, liver enzyme levels (ALT, AST), and inflammation via the gut-liver axis in preclinical NAFLD/NASH models. In the 2019 human RCT, A. muciniphila supplementation reduced blood markers of liver dysfunction versus placebo. The bacterium reinforces the intestinal barrier to limit LPS translocation to the liver via the portal vein, its primary hepatoprotective mechanism. Specific liver detoxification enzymes have not been studied.
- ácido alfa-lipoicoCientífico
Alpha-lipoic acid is a potent endogenous antioxidant that scavenges free radicals, regenerates vitamins C and E, and increases hepatic glutathione levels. Animal studies demonstrate hepatoprotective effects against NAFLD, acetaminophen toxicity, and CCl4-induced liver damage. Small human clinical studies report improvements in liver enzyme levels and oxidative stress markers in NAFLD and hepatitis patients.
- AlicinaCientífico
Allicin is the primary bioactive organosulfur compound from garlic demonstrating hepatoprotective effects via NLRP3 inflammasome suppression, phase II enzyme induction, and antioxidant activity. A PMC-indexed hepatoprotection review specifically documents allicin from Allium sativum as exhibiting hepatoprotective activity through suppression of NLRP3 inflammasome activation and reduction of caspase-1 and IL-1β in hepatocytes.
- alfa-glicosil isoquercitrinaCientífico
Isoquercitrin (AGIQ's direct metabolic precursor) has demonstrated hepatoprotective and antioxidant effects in liver cell models via AMPK/YAP signaling, reducing ROS and protecting hepatocytes from oxidative damage. Animal studies show AGIQ suppresses hepatic preneoplastic lesion development. Preclinical hepatocellular health benefits of AGIQ have been noted in multiple animal experiments.
- AndrographisCientífico
Andrographis paniculata has extensive use in Ayurvedic, Chinese, and Southeast Asian traditional medicine for liver protection, hepatitis, and jaundice. Scientific studies demonstrate andrographolide prevents hepatotoxin-induced liver injury by reducing oxidative stress, elevating glutathione, and inhibiting inflammatory mediators. Animal studies confirm hepatoprotective and antioxidant action against BHC and CCl4-induced liver damage.
- andrographolideCientífico
Andrographolide is the primary active diterpenoid from Andrographis paniculata demonstrating documented hepatoprotective effects via NF-κB inhibition, Nrf2 activation, glutathione restoration, and antioxidant enzyme upregulation. Preclinical studies confirm it prevents hepatotoxin-induced liver injury. Its hepatoprotective activity is specifically cited in peer-reviewed research and is the basis for Andrographis paniculata's liver-support classification.
- achioteCientífico
Multiple clinical trials in NAFLD patients show annatto-derived delta-tocotrienol significantly reduces liver enzymes (ALT, AST), fatty liver index, and degree of hepatic steatosis on ultrasound. A 24-week RCT (n=71) using 600 mg/day demonstrated improvements in liver biomarkers, HOMA-IR, and steatosis grade. Animal data also confirm bixin's hepatoprotective effect against toxic insult.
- Aronia melanocarpaCientífico
Aronia melanocarpa extracts have demonstrated hepatoprotective activity in multiple animal models, including against carbon tetrachloride and alcohol-induced liver injury, via Nrf2 signaling and antioxidant mechanisms. A human pilot trial found reductions in liver enzyme (ALAT) levels following 6 weeks of Aronia extract supplementation.
- alcachofaCientífico
Artichoke leaf extract (Cynara scolymus) demonstrates antioxidant, choleretic, and hepatoprotective effects validated in both animal studies and human RCTs. A double-blind RCT in 60 NASH patients showed significant improvement in liver enzymes (ALT, AST) and lipids with 2700 mg/day extract. A 2018 RCT in 100 NAFLD patients showed increased hepatic blood flow and reduced liver enzymes, bilirubin, and triglycerides with 600 mg/day. Traditional use as a liver tonic and cholagogue dates back centuries in Mediterranean herbal medicine.
- ashitabaCientífico
Ashitaba has one randomized double-blind human trial (Noh et al., J Med Food, 2015) showing improvement in some liver function markers in habitual alcohol drinkers. Animal studies further support hepatoprotective effects, and a metabolic syndrome pilot confirmed hepatoprotective activity. Ashitaba has also traditionally been used to support liver function.
- astaxantinaCientífico
A 2026 systematic review of human trials suggests astaxanthin's primary organ for insulin sensitization may be the liver, with improvements in hepatic insulin resistance index observed. Animal studies confirm protection of liver tissue in PCOS models, and preclinical data show ASX reduces non-alcoholic fatty liver markers. Limited but emerging human evidence supports hepatic benefit.
- astrágaloCientífico
Astragalus and its constituent AS-IV have well-documented hepatoprotective activity in preclinical models, protecting against chemical liver injury, fibrosis, and metabolic liver disease. Traditional Chinese medicine has used astragalus for liver diseases including hepatitis. NIH LiverTox confirms hepatoprotective activity in animal models and traditional clinical use for hepatitis.
- atractylodesCientífico
Atractylodes macrocephala polysaccharides have demonstrated hepatoprotective effects in drug-induced and diet-induced liver injury models, reducing ALT/AST, oxidative stress markers, and inflammatory cytokines. The herb has a documented traditional association with liver and spleen meridian function in TCM.
- bambúCientífico
Bamboo stem and leaf extracts demonstrate hepatoprotective effects through activation of the Nrf2 antioxidant pathway and modulation of hepatic xenobiotic biotransformation enzymes. Animal studies show bamboo extract reduces hepatic fat content, oxidative liver damage, and acute-alcohol-induced liver injury. TCM uses bamboo preparations to 'clear heat' and detoxify.
- banabaCientífico
Banaba leaf extract exhibits hepatoprotective activity in animal and zebrafish models, reducing markers of liver injury, preventing fatty liver changes, and lowering hepatic lipid accumulation. Corosolic acid in obese mice produced a major reduction in hepatic lipids and prevented hepatic steatosis. No dedicated human liver detoxification clinical trials exist.
- cebadaCientífico
Barley sprout extract has been evaluated in human RCTs for its ability to protect against alcohol-induced liver oxidative stress. It activates Nrf2 antioxidant pathways, restores glutathione, and reduces liver enzyme markers in habitual drinkers with fatty liver.
- baya de arrayánCientífico
A small human RCT (n=44) found bayberry juice (250 mL twice daily, 4 weeks) reduced oxidative stress, inflammatory, and apoptotic markers in young adults with nonalcoholic fatty liver disease. Drugs.com and a PMC review confirm one small clinical study showed protective liver effects. Myricitrin's promotion of bile flow has been noted in traditional herbalism, though not confirmed in humans.
- polen de abejaCientífico
Bee pollen exhibits consistent hepatoprotective effects in multiple animal models, protecting against chemical-induced liver damage, reducing liver enzyme elevations (AST, ALT), and reducing hepatic steatosis. In vitro studies confirm protection of liver cell lines (HepG2, Hepa1-6) from oxidative and lipotoxic damage.
- remolachaCientífico
Betaine from beetroot supports hepatic methylation and protects against nonalcoholic fatty liver disease (NAFLD/MASLD) and alcoholic liver disease by preserving the methionine metabolic cycle. Betanin also reduces hepatic oxidative stress and lipid peroxidation in preclinical models, with limited human clinical data.
- mirobálano belléricoCientífico
Multiple preclinical studies demonstrate that T. bellirica extracts and its constituent ellagic acid exert hepatoprotective effects, reducing liver enzyme markers and oxidative stress in drug-induced hepatotoxicity models in rodents. Effects are comparable to silymarin as a reference hepatoprotective standard. Traditional use for liver protection is documented across Ayurveda, Tibetan, and traditional Chinese medicine systems.
- berberinaCientífico
Berberine, an isoquinoline alkaloid found in goldenseal, barberry, and Coptis, demonstrates hepatoprotective effects in animal models of CCl4-induced acute hepatotoxicity, significantly reducing ALT, AST, and liver oxidative damage. Clinical trial reviews confirm berberine reduces liver enzymes in NAFLD and liver disease. It also activates AMPK, reducing hepatic fat accumulation.
- betaineCientífico
Betaine is an established methyl donor for hepatic one-carbon metabolism, supporting S-adenosylmethionine (SAM) synthesis and thereby facilitating hepatic methylation, lipid export, and glutathione production. Clinical evidence in NASH/NAFLD is mixed: an open-label cohort study in 35 NASH patients (20 g/day, 1 year) showed improved liver enzymes and histology, while a subsequent RCT found no improvement in hepatic steatosis versus placebo. Betaine is FDA-approved (Cystadane) for homocystinuria to support hepatic homocysteine clearance.
- sal biliarCientífico
The liver uses bile salt synthesis and secretion as its primary mechanism for eliminating cholesterol and excreting lipophilic waste products (bilirubin, drug metabolites, xenobiotics) into the intestinal lumen for fecal excretion. Bile salt transport proteins (BSEP, MRP2) drive biliary secretion of conjugated toxins. Impaired bile salt export (cholestasis) causes hepatotoxic accumulation of bile constituents. UDCA is used clinically to reduce bile toxicity in cholestatic conditions.
- comino negroCientífico
A systematic review of 4 RCTs in NAFLD found N. sativa significantly reduced hepatic steatosis grade and serum liver enzymes (ALT, AST) in three of four trials. The 2025 meta-analysis of 82 RCTs confirmed significant improvements in ALT, AST, and ALP with N. sativa supplementation.
- pimienta negraCientífico
Piperine has demonstrated hepatoprotective activity by reducing lipid peroxidation, preventing GSH depletion, and inhibiting hepatotoxin-induced enzyme leakage in animal models. A human pilot study found piperine-curcumin-taurine combination benefited hepatocellular carcinoma patients. Traditional medicine systems have long used black pepper for liver and biliary complaints.
- bayas de gojiCientífico
LBPs are hepatoprotective across multiple liver injury models including alcohol-induced, carbon tetrachloride-induced, NAFLD, heavy metal, and cadmium-induced injury. Mechanisms include activation of PPAR-α and inhibition of NLRP3/Caspase-1–mediated pyroptosis. Traditional Chinese medicine canonically lists boxthorn as a liver-nourishing herb.
- brócoliCientífico
Broccoli sprout extract rich in sulforaphane has shown significant improvement in liver function markers (ALT, AST, GGT) in human RCTs involving subjects with NAFLD and hepatic abnormalities. Sulforaphane induces Nrf2-regulated phase II detoxification enzymes in the liver, reducing oxidative stress and protecting hepatocytes.
- Coles de BruselasCientífico
Brussels sprouts upregulate hepatic Phase I and Phase II detoxification enzymes (cytochrome P450s, glutathione S-transferases) via I3C/DIM and isothiocyanate-driven AhR and Nrf2 signaling. Human studies confirm increased blood and colonic GST activity after Brussels sprouts consumption. I3C is specifically noted by Memorial Sloan Kettering to stimulate detoxifying enzymes in the gut and liver.
- bardanaCientífico
Burdock root has demonstrated hepatoprotective effects in multiple animal studies, protecting the liver from damage caused by alcohol, carbon tetrachloride, acetaminophen, cadmium, and lead. A 2023 laboratory study found burdock root reduced fat accumulation in liver cells (hepatic steatosis). PMC reviews confirm antioxidant-mediated hepatoprotection. Human clinical data remain limited.
- repolloCientífico
Sulforaphane from cabbage activates hepatic Nrf2 signaling, upregulating Phase II detoxification and antioxidant enzymes in the liver. Cabbage juice has been shown to attenuate liver enzyme elevations (ALT, AST, ALP) in a rodent liver-damage model. I3C/DIM from cabbage also modulates hepatic CYP enzymes involved in hormone and xenobiotic metabolism.
- Caesalpinia cristaCientífico
Hepatoprotective activity of C. crista has been demonstrated in multiple animal studies, including protection against carbon tetrachloride (CCl4)- and iron-overload-induced liver toxicity. A PMC-indexed study confirmed hepatoprotection via antioxidant and iron-chelating mechanisms.
- capsanthinCientífico
Capsanthin protects against hepatic steatosis (fatty liver) in NAFLD mouse models, reducing liver lipid accumulation, hepatic enzyme markers (ALT, AST), and modulating fatty acid oxidation gene expression. These effects suggest a role in supporting liver metabolic function.
- cardamomoCientífico
Green cardamom has been directly studied in NAFLD patients in double-blind RCTs. A published RCT (n=87) using 1,500 mg/day for 3 months found cardamom increased serum Sirtuin-1 and reduced liver-related inflammatory markers and liver enzymes. Animal and cell studies further support hepatoprotective effects via Nrf2/HO-1/NQO-1 antioxidant pathway activation.
- zanahoriaCientífico
Carrot bioactives support hepatic detoxification through antioxidant protection against chemical-induced hepatotoxicity, modulation of liver enzyme profiles, and upregulation of Nrf2-mediated phase-2 detoxifying enzymes via falcarinol and falcarindiol. Evidence is primarily animal-based.
- cariofilenoCientífico
BCP exerts hepatoprotective effects in multiple rodent liver injury models, including alcoholic steatohepatitis, NAFLD, fibrosis, and hepatotoxin exposure, by reducing hepatic lipid accumulation, inflammation, and oxidative stress via CB2 and PPAR receptors.
- catequinasCientífico
EGCG and green tea catechins have been extensively studied for protective effects against non-alcoholic fatty liver disease (NAFLD), reducing liver triglyceride accumulation, oxidative stress, and inflammation in the liver. A systematic review found catechin supplementation plays a significant role in regulating lipid and glucose metabolism and reducing pro-inflammatory liver damage pathways.
- coliflorCientífico
Sulforaphane from cauliflower is a well-characterized inducer of hepatic phase II detoxification enzymes (glutathione-S-transferases, glucuronosyltransferases, NQO1) via the Nrf2/ARE pathway. It also activates ALDH2 to facilitate acetaldehyde metabolism and reduces inflammatory infiltration and hepatic fibrosis. Preclinical evidence is extensive; human choline-related data also supports liver fat metabolism.
- flor de pajaCientífico
Hepatoprotective activity of A. aspera has been demonstrated in multiple animal studies, including protection against chemical-induced liver damage. A 2015 PubMed-indexed Arch Med Sci study found saponins reduced hepatic lipid peroxidation and liver weight in high-cholesterol rats.
- chen piCientífico
Chen Pi flavonoids hesperidin and naringin protect the liver from chemically induced injury by activating the NRF2 antioxidant pathway, inhibiting AKT1 phosphorylation, and reducing hepatic lipid accumulation. Systems pharmacology studies confirm multi-target hepatoprotective activity.
- pamplinaCientífico
A rodent study demonstrated that a water-soluble polysaccharide fraction of S. media reduced markers of liver damage (ALT, AST, bilirubin) in CCl4-induced hepatitis. Traditional use of chickweed for liver 'heat-clearing' also exists. No human studies have been conducted.
- achicoriaCientífico
Chicory (Cichorium intybus) has traditional use in Unani, Ayurvedic, and European herbal medicine as a liver tonic and cholagogue. Scientific studies confirm hepatoprotective effects via inulin-mediated prebiotic effects, antioxidant activity, and anti-inflammatory properties. A 2024 clinical trial review confirmed chicory reduces liver enzymes in liver disease.
- Raíz de salvia chinaCientífico
Danshen has demonstrated hepatoprotective effects in both clinical trials and preclinical studies, covering non-alcoholic fatty liver disease (NAFLD), alcoholic liver disease, and hepatic fibrosis. A meta-analysis of 8 RCTs in NAFLD patients showed significant reductions in liver transaminases. Its mechanisms include antioxidant activity, anti-fibrotic effects, and regulation of lipid metabolism.
- clorelaCientífico
Chlorella, a unicellular green algae, has demonstrated hepatoprotective effects in clinical and preclinical studies, with a 2024 clinical trials review confirming it reduces liver enzymes in liver disease patients. Its hepatoprotective activity relates to its antioxidant capacity, chlorophyll content, and ability to bind and facilitate elimination of toxins and heavy metals from the liver.
- clorofilaCientífico
Chlorophyll and its derivatives (chlorophyllin) bind lipophilic carcinogens and aflatoxins in the GI tract, reducing their absorption and hepatic exposure. A well-designed crossover clinical trial in Qidong, China found chlorophyllin supplementation significantly reduced aflatoxin-DNA adduct biomarkers in humans, providing direct evidence of liver carcinogen reduction. Traditional food use of chlorophyll-rich plants for liver health spans multiple cultures.
- clorofilinaCientífico
Chlorophyllin intercepts dietary hepatotoxic carcinogens (particularly aflatoxin-B1) in the GI tract before they reach the liver, with a 55% reduction in DNA adduct biomarkers demonstrated in a landmark PNAS RCT (n=180). In mouse models of hepatic fibrosis, oral chlorophyllin attenuated liver inflammation and reduced fibrosis markers by modulating gut-liver signaling. The human evidence relates to carcinogen interception rather than direct hepatic enzyme modulation.
- baya de aroniaCientífico
Multiple animal studies show chokeberry extract protects against liver injury, reduces hepatic lipid accumulation (steatosis), and suppresses serum transaminases, while increasing liver antioxidant capacity. The hepatoprotective effect has been documented in models of alcoholic liver injury, carbon tetrachloride toxicity, and non-alcoholic fatty liver disease. Direct human liver clinical trial evidence is limited.
- colinaCientífico
Choline is an essential nutrient whose deficiency directly causes hepatic steatosis (fatty liver), demonstrated in controlled human depletion studies. It is required for VLDL assembly and hepatic fat export, and supports phase II liver detoxification via methylation pathways. Adequate choline intake prevents liver damage and supports liver regeneration, documented in Journal of Nutrition studies.
- crisantemoCientífico
Chrysanthemum extracts demonstrate hepatoprotective activity in multiple animal studies, reducing markers of liver injury and oxidative stress. In TCM, chrysanthemum 'clears the liver' and is prescribed for liver-heat conditions. A 2025 Scientific Reports study showed C. morifolium extract ameliorated fatty liver and improved lipid and liver function markers in a mouse model.
- crisinaCientífico
Chrysin has well-documented hepatoprotective properties in animal models, counteracting hepatotoxicity induced by chemical agents (CCl4, d-galactosamine, paracetamol), alcohol, and metabolic insults including NAFLD and liver fibrosis. Mechanisms include restoring antioxidant enzymes, reducing lipid peroxidation, and suppressing inflammatory cytokines. No human liver trials have been published.
- clavoCientífico
Preclinical studies demonstrate that eugenol-rich clove fractions reverse biochemical and histopathological signs of liver injury in animal models of cirrhosis, fatty liver, and toxic hepatopathy. Clove polyphenols modulate oxidative stress and inflammatory markers in hepatic tissue.
- coixCientífico
Coix seed extracts reduce hepatic fat accumulation, oxidative stress, and liver enzyme elevations in nonalcoholic fatty liver disease (NAFLD) animal models. Multiple studies show liver-protective effects via AMPK pathway activation and lipogenesis inhibition.
- col rizadaCientífico
Collard greens contain glucosinolates and methyl cysteine sulfoxides that activate hepatic phase II detoxification enzymes (glutathione S-transferases), facilitating conjugation and elimination of carcinogens and xenobiotics. Collards also boost glutathione — the body's primary antioxidant — which is required for liver neutralization of toxins. A 12-week RCT in 391 adults consuming cruciferous vegetables showed significantly increased urinary excretion of benzene carcinogens compared to placebo.
- Coptis chinensisCientífico
Coptis chinensis and its berberine component have documented hepatoprotective effects in animal models, reducing liver injury markers (ALT, AST), improving hepatic lipid metabolism, and used in TCM formulas for liver congestion and 'clearing heat in the liver.' Clinical evidence for NAFLD shows promise.
- coenzima Q10 (CoQ10)Científico
CoQ10 is naturally concentrated in the liver, where it supports mitochondrial energy production and acts as a lipid-soluble antioxidant. Systematic reviews and meta-analyses of RCTs indicate CoQ10 supplementation modestly reduces liver enzymes (ALT and AST) in NAFLD patients. Evidence for broader 'detoxification' is limited to hepatoprotective effects against drug-induced and metabolic liver injury.
- cordycepsCientífico
Cordyceps militaris exhibits hepatoprotective activity in multiple animal models of liver injury, including NAFLD and NASH, reducing liver enzymes (ALT, AST), hepatic lipid accumulation, triglycerides, and oxidative stress. It inhibits liver fibrosis and reduces inflammatory cytokines in hepatic tissue. Human safety data from NIH LiverTox confirm no elevation in liver enzymes in adults taking Cordyceps extracts, but human therapeutic trials for liver disease are lacking.
- seda de maízCientífico
Animal studies consistently demonstrate hepatoprotective effects of corn silk extract, including reductions in liver enzymes (AST, ALT), improvements in liver histopathology, and protection against chemical-induced hepatotoxicity. A 2024 mouse study showed corn silk extract ameliorates fatty liver disease by modulating gut microbiota and liver metabolites.
- pepinoCientífico
Cucumber extracts have demonstrated hepatoprotective activity in multiple animal studies, protecting against chemically induced liver injury (cumene hydroperoxide, carbon tetrachloride) and normalising liver enzymes and oxidative stress markers in diabetic models. The ScienceDirect Cucumis genus review identifies organ-protective activities as validated pharmacological properties.
- cominoCientífico
Cumin stimulates hepatic bile secretion significantly (bile volume increased 25%, bile acid output up to 70% in animal studies), which aids fat digestion and supports liver function. One RCT specifically studied cumin in nonalcoholic steatohepatitis (NASH). Traditional use for jaundice and liver function is documented.
- cúrcumaCientífico
Curcumin, the primary bioactive polyphenol from turmeric, exerts hepatoprotective effects through antioxidant, anti-inflammatory (NF-κB inhibition), and antifibrotic (TGF-β/Smad modulation) mechanisms. Multiple RCTs and meta-analyses demonstrate significant reductions in ALT and AST in MAFLD patients. A 72-week RCT showed MASH resolution in 62% of patients receiving phospholipid curcumin 2g/day.
- d-alpha tocoferolCientífico
D-alpha tocopherol is the most extensively studied antioxidant in non-alcoholic fatty liver disease (NAFLD/NASH), with multiple RCTs demonstrating reductions in liver enzymes, steatosis, hepatic inflammation, and ballooning degeneration. The NIH LiverTox resource confirms its hepatoprotective role in inflammatory liver disease.
- d-glucaratoCientífico
D-glucarate (calcium-D-glucarate) inhibits beta-glucuronidase, an enzyme produced by gut bacteria that deconjugates glucuronide-conjugated toxins, hormones, and carcinogens, allowing their reabsorption. This supports phase II hepatic glucuronidation, enhancing elimination of toxins and hormones. It is specifically cited in liver detoxification databases alongside milk thistle, NAC, and other hepatoprotective agents.
- diente de leónCientífico
Dandelion (Taraxacum officinale) has extensive traditional use in TCM and European herbalism as a liver tonic and bile-stimulating herb. Preclinical studies demonstrate hepatoprotective effects against alcohol, carbon tetrachloride, and paracetamol-induced liver injury through antioxidant and anti-inflammatory activity. Clinical human evidence is limited and emerging; animal studies are well-documented.
- delta-tocopherolCientífico
Delta-tocopherol and its tocotrienol counterpart have been studied in human clinical trials for non-alcoholic fatty liver disease (NAFLD), showing significant improvement in hepatic steatosis, oxidative stress, and insulin resistance. A 48-week RCT found both δ-tocotrienol and α-tocopherol equally improved fatty liver index and liver-to-spleen ratio, with δ-tocotrienol more potent in reducing inflammation and apoptosis. Vitamin E forms reduce oxidative stress and fat accumulation in hepatocytes.
- DIM (diindolilmetano)Científico
Diindolylmethane (DIM) is the primary active metabolite of indole-3-carbinol from cruciferous vegetables, acting as an Nrf2 and AhR ligand inducing hepatic phase I and II detoxification enzymes. It promotes favorable estrogen and xenobiotic metabolism in the liver. Scientific research documents its role in upregulating GST, UGT, and CYP1A-mediated hepatic biotransformation relevant to liver detox.
- dioscoreaCientífico
Diosgenin and dioscin from Dioscorea species demonstrate hepatoprotective effects in multiple animal and cell studies, reducing oxidative stress, liver fibrosis, and inflammatory cytokines. A 2023 PMC literature review catalogues mechanisms including antioxidant activity and gut microbiota modulation. No human liver trials exist.
- galato de epigalocatequina (EGCG)Científico
EGCG is the principal hepatoprotective polyphenol in green tea, demonstrating antioxidant, anti-inflammatory, antiviral, and anti-fibrotic activity in the liver. Research confirms EGCG inhibits hepatitis B and C viral replication, reduces hepatic lipid accumulation, and activates Nrf2-mediated phase II detoxification pathways. Clinical trial reviews confirm it reduces liver enzymes in liver disease.
- Enicostemma littoraleCientífico
E. littorale demonstrates hepatoprotective and hepatomodulatory activity in multiple preclinical models including paracetamol-, D-galactosamine-, ethanol-, and CCl4-induced hepatotoxicity. Swertiamarin is identified as the primary hepatoprotective phytochemical, with mechanisms including antioxidant enzyme upregulation, ROS reduction, and normalization of hepatic biomarker enzymes.
- eucommiaCientífico
Eucommia extracts show hepatoprotective effects in multiple preclinical models. In CCl4-induced chronic hepatotoxicity rats, leaf extract reduced liver injury enzymes (ALT, LDH, ALP), increased glutathione and antioxidant enzymes, and reduced histopathological liver lesions. Network pharmacology studies suggest mechanisms involving anti-oxidative, anti-inflammatory, and cytoprotective targets.
- hinojoCientífico
Fennel essential oil demonstrates hepatoprotective effects in preclinical models, reducing liver enzyme markers (AST, ALT, ALP, bilirubin) following chemical-induced hepatotoxicity. Traditional medicine also classifies fennel as hepatoprotective. Human liver-specific clinical trials are not available.
- fenogrecoCientífico
Fenugreek exhibits hepatoprotective effects supported by animal model studies and emerging clinical data; it reduces hepatic oxidative stress, modulates bile composition, and may protect against liver injury. The NIH LiverTox database confirms no clinically apparent liver toxicity and documented preclinical hepatoprotective activity.
- ferula assafoetidaCientífico
Animal studies consistently demonstrate hepatoprotective activity of F. asafoetida extracts, including reduction of elevated liver enzymes (ALT, AST, ALP) in models of chemical-induced hepatotoxicity. A 2025 PMC review specifically examined asafoetida's protective effects on the liver against formaldehyde-induced damage.
- ácido ferúlicoCientífico
Ferulic acid has demonstrated hepatoprotective activity against drug-induced liver injury (acetaminophen, methotrexate, antituberculosis drugs, cisplatin), liver fibrosis, and hepatocyte apoptosis in multiple preclinical studies. Clinical trials have shown FA can improve markers in liver cirrhosis. It reduces plasma ALT, AST, and ADH activity, protects hepatocyte structure, and reduces oxidative stress-mediated hepatotoxicity.
- fisetinaCientífico
Fisetin exerts hepatoprotective effects via NF-κB, Nrf2, AMPK, and SIRT1 pathway modulation, reducing hepatic inflammation, oxidative stress, steatosis, and fibrosis in preclinical models. A 2025 PMC review identified its potential in intestinal failure-associated liver disease.
- forsitiaCientífico
Forsythia suspensa has documented hepatoprotective activity, with multiple preclinical studies identifying liver-protective compounds including new iridoid glycosides. Forsythoside A exerts hepatoprotective effects via antioxidant mechanisms including MDA clearance. Animal models show it can prevent fulminant hepatitis. Human clinical trials are lacking.
- fu lingCientífico
Poria cocos polysaccharides have demonstrated hepatoprotective effects in multiple preclinical models, reducing ALT, AST, and inflammatory markers in alcohol-induced and LPS/D-galactosamine-induced liver injury. P. cocos triterpenoids also promote reverse cholesterol transport and reduce liver lipid deposition. These effects are mediated via PI3K/AKT/NF-κB and antioxidant pathways.
- ganodermaCientífico
Ganoderma lucidum has well-documented hepatoprotective properties supported by both preclinical and human evidence. A double-blind crossover RCT in 42 healthy volunteers showed significant improvements in antioxidant capacity and liver enzyme markers, with reversal of mild fatty liver on ultrasound.
- gardeniaCientífico
Gardenia jasminoides has extensive preclinical and some clinical evidence for hepatoprotective activity. A clinical study demonstrated that crude gardenia extract rapidly lowers serum bilirubin and transaminase levels in jaundice-induced acute hepatitis. Geniposide protects against liver injury from acetaminophen, CCl4, alcohol, ischemia-reperfusion, sepsis, and cholestasis, via anti-inflammatory and antioxidant mechanisms.
- Gardenia jasminoidesCientífico
Gardenia jasminoides has extensive preclinical evidence for hepatoprotective and cholagogic (bile-promoting) effects. Key constituents geniposide and crocins protect against chemical-induced liver injury (CCl4, ANIT, acetaminophen, alcohol), reduce ALT/AST enzyme elevations, and promote bile flow. It is a core herb in the TCM liver-jaundice formula Yinchenhaotang, which has clinical use in Japan and China.
- ajoCientífico
Garlic (Allium sativum) and its organosulfur compounds (allicin, S-allylcysteine, diallyl sulfide) demonstrate hepatoprotective effects in multiple preclinical studies, reducing CCl4 and alcohol-induced liver injury through antioxidant, anti-inflammatory, and phase II enzyme-inducing mechanisms. S-allylcysteine specifically suppresses NLRP3 inflammasome activation in hepatocytes. Traditional use as a liver-supportive food and medicine spans multiple cultures.
- bulbo de ajoCientífico
Garlic organosulfur compounds upregulate hepatic detoxification enzymes including glutathione peroxidase and support liver function in clinical settings. An RCT systematic review (PMC10292950) found garlic supplementation improves liver enzyme levels and reduces steatosis in NAFLD patients. Mechanistic evidence for garlic-supported hepatic phase-II detoxification is well established.
- gencianaCientífico
Gentian root has documented hepatoprotective activity in animal models, with extracts of G. asclepiadea significantly reducing serum transaminases (ALT, AST), alkaline phosphatase, and bilirubin in CCl₄-induced liver injury, while raising glutathione, catalase, and superoxide dismutase. G. manshurica protected against alcohol-induced fatty liver and hepatic steatosis in rodents. Traditional use as a liver tonic is codified in Commission E and the WHO monograph.
- raíz de gencianaCientífico
Multiple Gentiana species including G. lutea exhibit hepatoprotective effects in animal models, reducing liver enzyme elevations (AST, ALT, ALP), inhibiting lipid peroxidation, and augmenting antioxidant defenses (SOD, CAT, GSH). Gentiopicroside and swertiamarin are the primary hepatoprotective constituents. TCM has used gentian for liver-related diseases for centuries. Human clinical data are absent; evidence is preclinical.
- Gentiana macrophyllaCientífico
Gentiana macrophylla exhibits hepatoprotective activity in preclinical models of liver injury. Root extracts and the constituent gentiopicroside protect against CCl4-induced, ethanol-induced, and immune-mediated liver damage, reducing ALT, AST, MDA, and restoring hepatic tissue structure. Gentiopicroside also modulates lipid metabolism via the LKB1/AMPK pathway, relevant to alcoholic and metabolic liver disease.
- jengibreCientífico
Ginger (Zingiber officinale) and its active constituents (gingerols, shogaols) demonstrate hepatoprotective effects in multiple animal studies via antioxidant and anti-inflammatory mechanisms, reducing liver enzyme elevations and oxidative liver damage. Traditional use in Ayurvedic, Chinese, and Arab medicine for digestive and liver conditions is extensively documented. Human clinical data specifically for liver detox are limited.
- ginsengCientífico
Ginseng has been extensively studied for hepatoprotective effects. A 2020 meta-analysis of 14 RCTs (n=992) found no significant change in standard liver enzymes (ALT, AST, GGT, ALP) at conventional doses in healthy individuals, but a 2025 systematic review highlights ginseng's multi-target mechanisms in non-alcoholic fatty liver disease (NAFLD), including reduction of lipid accumulation and oxidative stress. Preclinical and some clinical evidence supports hepatoprotective activity in those with liver disease, though robust human trial data remain limited.
- GlicinaCientífico
Glycine is a direct substrate for hepatic glutathione synthesis (the cell's primary detoxifying antioxidant) and performs phase II conjugation of potentially toxic endogenous and xenobiotic metabolites. Human studies in obese individuals show glycine supplementation corrects glycine deficiency and restores the glycine conjugation detoxification pathway. Animal studies further show glycine protects hepatocytes from ischemic and toxic injury via cytoprotective chloride channel activation.
- baya gojiCientífico
Goji berry has documented hepatoprotective effects in animal models and a human clinical study. A 45-day study in metabolic syndrome patients showed significant reduction in liver transaminases (AST/ALT). Animal research demonstrates protection against alcohol-induced fatty liver, carbon tetrachloride toxic hepatitis, and acute alcohol-induced liver injury, partly via gut microbiota modulation.
- grosellaCientífico
Amla has well-documented hepatoprotective activity. PMC literature reviews cite its ability to modulate oxidative markers and enhance endogenous antioxidant defenses in hepatocyte cell lines. Animal studies show reversal of liver damage, and a Ayurvedic tradition of liver tonic use is reinforced by modern mechanistic research.
- uvaCientífico
Preliminary clinical evidence shows GSE supplementation benefits liver health, particularly in non-alcoholic fatty liver disease (NAFLD). A double-blind RCT in 50 NAFLD patients treated with 520 mg/day GSE found improvements in glycemic status, lipid profile, blood pressure, and liver enzymes. Animal studies confirm hepatoprotective effects against steatosis progression. Evidence is preliminary and more large-scale RCTs are needed.
- toronjaCientífico
Grapefruit's flavonoids naringenin and naringin have documented protective effects on the liver, including reduction of fat accumulation, oxidative stress, and inflammatory signaling in NAFLD models. Grapefruit juice inhibits hepatic CYP450 enzymes, modulating phase I liver detoxification. Clinical trial protocols for naringenin in NAFLD have been published, though completed human RCTs are limited.
- hierba amarga verdeCientífico
Hepatoprotective activity is among the most deeply studied properties of green chiretta. Preclinical studies across multiple hepatotoxicity models consistently show restoration of liver enzymes (ALT, AST, ALP) and antioxidant defense; early clinical data support benefit in liver function in patients with gastrointestinal and liver ailments. Traditional use for jaundice and liver disorders is millennia-old.
- té verdeCientífico
Green tea and its primary polyphenol EGCG (epigallocatechin gallate) have demonstrated hepatoprotective effects in preclinical studies and clinical trials, reducing liver enzyme levels and liver fat in NAFLD. EGCG inhibits hepatitis B and C viral replication, reduces hepatic inflammation, and supports phase II detoxification enzyme activity. A comprehensive 2024 clinical trial review confirmed green tea caused a decrease in liver enzymes.
- Gymnema sylvestreCientífico
GS demonstrates hepatoprotective activity in animal models via reduction of hepatotoxicity markers (ALT, AST, ALP), restoration of liver antioxidants, and suppression of hepatic oxidative stress. Animal evidence and traditional classification as a liver tonic are consistent; human hepatic endpoint trials are absent.
- Hedychium spicatumCientífico
Hepatoprotective activity of H. spicatum is documented in both in vitro and in vivo preclinical studies. Isolated diterpenes protect hepatocytes from toxin-induced damage, normalizing SGOT/SGPT in CCl4 models. An in vivo feeding study in cockerels showed rhizome powder ameliorated liver damage caused by chronic indoxacarb exposure.
- hesperidinaCientífico
Hesperidin exerts hepatoprotective effects by reducing oxidative stress, inhibiting hepatic stellate cell activation and fibrosis, and protecting against chemical-induced liver injury in preclinical models. It maintains glutathione (GSH) and catalase activity and reduces lipid peroxidation (MDA) in liver tissue. Evidence is primarily preclinical with robust animal data.
- hibiscoCientífico
Multiple preclinical studies and one human clinical trial demonstrate that Hibiscus sabdariffa extract (HSE) exerts hepatoprotective effects, reducing liver steatosis, liver enzyme elevations, and lipid peroxidation. A 12-week RCT in obese adults found HSE improved liver steatosis. Mechanisms involve downregulation of lipogenic genes and antioxidant upregulation.
- madreselvaCientífico
L. japonica has documented hepatoprotective effects in preclinical models, including protection against CCl4-induced liver injury, dimethylnitrosamine-induced liver fibrosis, and non-alcoholic steatohepatitis. Extracts reduce ALT, AST, and MDA while increasing GSH, suggesting antioxidative liver protection.
- marrubioCientífico
Animal and in vitro studies consistently document hepatoprotective activity of M. vulgare, linked to its antioxidant phenolic compounds and a novel monoterpene acid. WebMD and Drugs.com list liver complaints among traditional uses, while the PMC pharmacological overview includes hepatoprotective activity among the most investigated properties. No human clinical trials exist.
- judía jacintoCientífico
Preclinical studies identify hepatoprotective activity as an established pharmacological property of L. purpureus. Animal models demonstrate protection against induced liver toxicity, and metabolomics studies show attenuation of HFD-induced liver metabolism dysregulation. Hypatroprotective activity is consistently cited in peer-reviewed pharmacology reviews.
- hortensiaCientífico
In vitro studies have identified hepatoprotective coumarins and secoiridoids in Hydrangea paniculata stems. A PubMed-indexed study (PMID 24811324) isolated new coumarin glucosides and secoiridoid glucosides from H. paniculata stems that showed hepatoprotective activity against DL-galactosamine-induced toxicity in human liver HL-7702 cells at 10 µM. Evidence is limited to cell culture; no animal or human studies confirm liver-specific detoxification effects.
- Bael indioCientífico
Multiple animal studies demonstrate that Aegle marmelos leaf and fruit extracts protect the liver from chemically-induced damage (CCl4, alcohol, H. pylori toxins), restoring liver enzyme levels (ALT, AST, ALP, bilirubin) and antioxidant enzyme activity. The hepatoprotective activity is attributed to rutin, flavonoids, and coumarins in the extract.
- Zarzaparrilla indiaCientífico
Hepatoprotective activity of H. indicus is one of its most robustly documented pharmacological properties, supported by multiple published animal studies using paracetamol and CCl4 liver injury models. The root extract significantly reduced liver enzyme markers of hepatotoxicity and was comparable to silymarin as a standard reference.
- Tinospora indiaCientífico
T. cordifolia has well-established hepatoprotective activity in preclinical models (CCl4, lead, anti-tuberculosis drugs) and limited but positive clinical data. Its hepatoprotective effects are mediated through inhibition of lipid peroxidation, antioxidant enzyme induction, and alkaloid-driven anti-inflammatory pathways. A 2024 narrative review in the Journal of Pharmacy and Pharmacology concludes that T. cordifolia 'is an effective hepatoprotective agent against various hepatotoxic substances.'
- hojas de índigoCientífico
Animal studies from Annamalai University and others demonstrate hepatoprotective activity of I. tinctoria leaf extracts against chemically induced liver injury, with significant restoration of liver enzymes (AST, ALT, ALP) and antioxidant parameters. This use is also well-rooted in traditional Ayurvedic and TCM practice.
- indol-3-carbinolCientífico
Indole-3-carbinol (I3C) from cruciferous vegetables induces hepatic phase I (CYP1A2) and phase II (GST, UGT) detoxification enzymes, promoting favorable metabolism and excretion of estrogens, carcinogens, and xenobiotics. It is well-documented in the literature on dietary support of hepatic detoxification biotransformation pathways. I3C and its dimer DIM are among the best-studied cruciferous phytochemicals for liver detox enzyme induction.
- inositolCientífico
Inositol plays a role in hepatic lipid metabolism and has been studied in non-alcoholic fatty liver disease (NAFLD). A 2020 systematic review identified RCT evidence for pinitol (a methylated inositol) reducing liver fat, AST levels, and lipid peroxidation. A 2023 RCT of myo-inositol 4 g/day in obese NAFLD patients showed improvements in liver enzymes and cardiometabolic markers versus placebo.
- jiaogulanCientífico
Jiaogulan gypenosides protect liver cells from oxidative stress, lipid accumulation, and inflammatory injury. Animal studies and in vitro work document hepatoprotective mechanisms; a 6-month human clinical study reported positive results as an add-on treatment for non-alcoholic fatty liver disease (NAFLD).
- jujubeCientífico
Multiple preclinical studies demonstrate jujube extract protects hepatocytes against alcohol-, acetaminophen-, and CCl4-induced damage by activating the Nrf2 antioxidant pathway and reducing liver enzyme markers (ALT, AST, ALP). Jujube is documented in TCM as a liver tonic. Human clinical evidence is limited to indirect data (liver enzymes in T2D RCTs).
- col rizadaCientífico
Sulforaphane from kale potently activates Nrf2 in the liver, upregulating phase II detoxification enzymes (GST, NQO1, HO-1) and reducing oxidative stress and lipid peroxidation. I3C from kale's glucobrassicin protects against liver fibrosis and injury in animal models. Traditional medicine also recognizes kale for hepatic health.
- kudzuCientífico
Kudzu flower and root have a long TCM history for supporting liver function, particularly in the context of alcohol detoxification. Puerarin isoflavones have demonstrated hepatoprotective effects in animal models by reducing alcohol-induced liver injury through antioxidant mechanisms and modulation of TNF-α and endotoxin receptors. Human evidence is limited to the alcohol-related context.
- l-carnitineCientífico
L-carnitine supports hepatic fatty acid β-oxidation, reduces steatosis in NAFLD, and lowers ammonia in hepatic encephalopathy. Multiple RCTs by Malaguarnera et al. confirmed L-carnitine significantly improved hepatic encephalopathy parameters in cirrhotic patients. A PMC review lists L-carnitine's therapeutic role across NASH, cirrhosis, and hepatocellular carcinoma.
- L-cisteínaCientífico
L-cysteine is the rate-limiting amino acid for hepatic glutathione synthesis. GSH is essential for Phase II liver detoxification (conjugation of toxins, drugs, and metabolites for excretion). NAC is the medically established antidote for acetaminophen hepatotoxicity by restoring depleted liver glutathione. Evidence in NAFLD for NAC reducing liver enzyme levels and inflammation is supported by preclinical and limited clinical data.
- L-cistinaCientífico
L-cystine and its reduced form cysteine are precursors for hepatic glutathione, which is central to the liver's phase II detoxification processes. The majority of plasma GSH originates in the liver, and impaired hepatic GSH synthesis has systemic redox consequences. Clinical evidence is primarily mechanistic or derived from cysteine/NAC studies; direct L-cystine liver-detox RCTs are limited.
- L-glutatiónCientífico
Glutathione is the liver's primary endogenous antioxidant and phase II detoxification conjugating agent, directly participating in elimination of toxins, heavy metals, and reactive metabolites. Hepatic glutathione depletion is a central mechanism of liver injury from numerous toxins and drugs. Supplemental glutathione and compounds that raise it (NAC, ALA) are specifically used in liver detox contexts.
- L-glicinaCientífico
Glycine is a direct precursor of glutathione (γ-L-glutamyl-L-cysteinyl-glycine), the liver's principal endogenous detoxification antioxidant. Glycine also participates directly in hepatic phase II conjugation (glycine conjugation), detoxifying bile acids and aromatic compounds. Animal studies show hepatoprotective effects, and small clinical trials suggest benefit in chronic hepatitis and fatty liver disease.
- L-metioninaCientífico
Up to 50% of dietary methionine is metabolized in the liver. L-methionine is a precursor to SAMe and to cysteine, the rate-limiting substrate for glutathione (GSH), the liver's primary phase II detoxification antioxidant. SAMe therapy has been evaluated in 41 human liver-disease studies; it restores hepatic GSH and attenuates injury in alcoholic liver disease. Evidence for supplemental L-methionine specifically in healthy individuals is limited; most human data concern SAMe.
- L-ornitinaCientífico
L-ornithine is a central intermediate of the hepatic urea cycle, converting toxic ammonia to urea. As the L-ornithine L-aspartate (LOLA) formulation, it is clinically used to treat hepatic encephalopathy (HE) in cirrhosis, with meta-analyses of multiple RCTs confirming significant reductions in blood ammonia and improvements in mental state. Evidence also includes direct hepatoprotective effects such as reductions in liver enzymes and improvements in MELD scores.
- L-treoninaCientífico
L-Threonine plays a lipotropic role in the liver, helping to regulate fat metabolism and prevent hepatic lipid accumulation. Animal studies demonstrate that threonine deficiency causes fatty liver via impaired lipid transport. Threonine is also catabolized in liver mitochondria to glycine, which participates in Phase II detoxification via glycine conjugation. Evidence is predominantly from animal and biochemical studies, not human clinical trials.
- lecitinaCientífico
Phosphatidylcholine (PC), the main component of lecithin, is essential for hepatic fat export via VLDL synthesis; PC deficiency leads to hepatic steatosis (fatty liver). A double-blind RCT in TPN patients showed lecithin supplementation significantly raised plasma choline and reduced hepatic steatosis. PC has also been studied for alcoholic liver disease and fibrosis in animal and human research.
- Micelio de Lentinula edodesCientífico
LEM contains vanillic acid, syringic acid, and low-molecular-weight lignin fractions that demonstrate hepatoprotective effects in multiple animal models of acute and chronic liver injury. LEM reduces liver fibrosis, decreases AST/ALT levels, and inhibits collagen fibril accumulation in preclinical studies.
- raíz de regalizCientífico
Glycyrrhizin (injectable form, Stronger Neo-Minophagen C) has been used clinically in Japan for over 30 years to treat chronic viral hepatitis, reducing liver enzyme levels. Preclinical evidence demonstrates licorice reduces ALT, AST, TNF-α, and oxidative stress markers in alcohol-induced and diabetes-related fatty liver models. NCCIH and LiverTox (NIH) acknowledge the hepatoprotective evidence base.
- limonenoCientífico
D-limonene is documented to modulate hepatic Phase I and Phase II detoxification enzymes in animal studies, reducing Phase I activity and upregulating Phase II enzymes (glutathione S-transferase, quinone reductase). It also reduces liver transaminase levels and attenuates inflammatory infiltration and lipid accumulation in alcoholic and non-alcoholic liver disease models.
- fracciones líquidas de hígadoCientífico
A 1975 double-blind RCT (Preziosi et al.) in 40 hospitalized men with hepatic dysfunction found that IM total liver extract improved liver function markers — including cholesterol, prothrombin time, and hemoglobin — with 60% of treated patients improved versus placebo. Early research also suggests liver extract combined with flavin adenine dinucleotide (FAD) may enhance interferon response in chronic hepatitis C patients.
- hoja de lophatherumCientífico
Ethanol extracts of L. gracile leaf show hepatoprotective activity against carbon tetrachloride (CCl4)-induced liver damage in mice, reducing markers of liver injury. Flavonoids isolated from the leaf also protect against restraint stress-induced liver injury in mice. Evidence is preclinical (animal studies only).
- semilla de lotoCientífico
Lotus seed and seedpod extracts protect the liver from chemically induced injury (CCl4, APAP, cisplatin) and reduce hepatic lipid accumulation in obese diabetic animals. In vitro studies confirm direct hepatocyte protection. No human hepatoprotective trials for lotus seed exist.
- luteolinaCientífico
Luteolin demonstrates significant hepatoprotective effects across NAFLD, NASH, hepatic fibrosis, and liver enzyme normalization in preclinical models and is a key active component in clinically used liver-protective formulations in traditional Chinese medicine practice. Human combination-product trial data also support improvements in hepatic enzyme profiles.
- lichiCientífico
Lychee pericarp polyphenols—especially epicatechin and procyanidin A2—have demonstrated hepatoprotective effects in preclinical models, decreasing liver injury biomarkers (AST, ALT) and preserving hepatocyte structure in CCl4-intoxicated mice. Flavanol-rich lychee extract also suppresses iNOS and TNF-α in hepatocytes, providing anti-inflammatory liver protection. In vitro data show procyanidin A2 supports liver cell regeneration in wound-healing assays and alcohol-injured cells.
- magnoliaCientífico
Magnolia officinalis bark extract activates the Nrf2 hepatoprotective pathway in human hepatocytes, upregulating antioxidant and detoxification enzymes. Magnolol prevents acute alcoholic liver damage via PI3K/Nrf2/PPARγ pathway activation. In NAFLD patients, magnolia extract has been shown to reduce hepatic fat content.
- hongo maitakeCientífico
Maitake supplementation in animal models inhibits hepatic lipid accumulation and modulates liver cholesterol metabolism genes, supporting hepatic lipid processing. Preclinical evidence demonstrates beta-glucans reduce oxidative stress and prevent fat storage in liver tissue. Traditional East Asian use included maitake as a liver tonic to boost qi and protect the organ.
- nuez de malabarCientífico
Hepatoprotective activity is documented for Adhatoda vasica through animal studies showing vasicinone's liver-protective effect. Multiple pharmacological reviews list hepatoprotective activity as confirmed. Traditional use includes jaundice and liver conditions.
- mangoCientífico
A 12-week RCT in overweight/obese adults found that daily mango consumption significantly decreased AST (aspartate transaminase) liver enzyme activity, suggesting a hepatoprotective effect. In vitro and animal data support mangiferin's antioxidant and anti-inflammatory properties reducing liver oxidative stress and hepatic inflammation.
- MejoranaCientífico
Marjoram extract has demonstrated hepatoprotective activity in rat models of liver injury, significantly reducing elevated liver enzymes (AST, ALT, GGT, ALP) and improving hepatic antioxidant status in high-fat diet-induced hepatosteatosis.
- Cloruro de metilsulfonio de metioninaCientífico
MMSC demonstrates hepatoprotective activity in multiple rodent models of chemically-induced liver injury, normalizing liver enzyme biomarkers (ALT, AST, GGT, LDH) and supporting antioxidant defense. It participates in methionine and glutathione metabolism via the BHMT2 enzyme pathway. All robust evidence is preclinical; human clinical liver studies have not been conducted.
- Cardo marianoCientífico
Milk thistle (Silybum marianum) and its active extract silymarin have centuries of traditional use for hepatic disorders. Clinical trials show silymarin modestly reduces liver enzyme markers (ALT, AST) and oxidative stress in alcoholic and non-alcoholic liver disease. A pooled analysis of trials in cirrhosis patients found silymarin associated with a significant reduction in liver-related deaths. Evidence is promising but mixed due to small, heterogeneous trials.
- MolibdenoCientífico
Molybdenum-dependent enzymes — aldehyde oxidase, xanthine oxidase, sulfite oxidase, and mARC — are all expressed in the liver and collectively perform critical phase I detoxification reactions. A 2024 PMC review linked dysregulation of XO and mARC to NAFLD and hepatocellular carcinoma. These roles are mechanistically established in human liver biochemistry.
- MorindaCientífico
M. officinalis-derived polysaccharides inhibit neutrophil and macrophage infiltration into the liver, acting as immune regulators to alleviate hepatic injury. M. citrifolia demonstrates hepatoprotective activity against CCl4-induced liver damage in rats, attributed to the antioxidant activity of flavonoid constituents.
- MorusCientífico
Morus extracts demonstrate hepatoprotective activity in preclinical studies and in clinical biomarker data. A 2025 meta-analysis found that mulberry supplementation improved AST levels in human trials. Anthocyanins protect hepatocytes from oxidative damage via MAPK and Nrf2 pathways.
- ArtemisaCientífico
Hepatoprotective activity of A. vulgaris aqueous-methanol extract has been demonstrated in rodent models, with normalization of elevated liver enzymes and protection of hepatocytes against oxidative stress. The plant is listed in TCM for hepatitis and its choleretic (bile-stimulating) action is documented. Preclinical findings only; no human hepatoprotection trials exist.
- MoraCientífico
Mulberry extract has demonstrated hepatoprotective effects in cell-based and animal studies, including protection against oxidative damage and lipid accumulation in liver cells. The 2025 meta-analysis of clinical RCTs found mulberry improved AST levels. Mulberry leaf flavonoids protect HepG2 liver cells from H₂O₂-induced injury via Nrf2 activation.
- MostazaCientífico
Mustard seed myrosinase enzyme enhances production of sulforaphane from glucoraphanin in cruciferous foods; sulforaphane is a potent Nrf2 inducer that upregulates hepatic phase II detoxification enzymes. Human RCT evidence confirms that adding mustard seed powder to cooked broccoli significantly increases sulforaphane bioavailability, supporting liver detoxification pathways.
- MirobálanoCientífico
TC water extract pretreatment significantly attenuated drug-induced acute liver injury in mice, reducing serum AST, ALT, and LDH, suppressing hepatic inflammatory cytokines, and restoring antioxidant enzyme activity. TC also prevented liver toxicity from rifampicin/isoniazid combination in animal models.
- N-acetil-cisteína (NAC)Científico
NAC is the precursor to hepatic glutathione, the liver's primary endogenous antioxidant and detoxification agent. It is FDA-approved (IV form) as the standard-of-care antidote for acetaminophen overdose-induced liver failure. Research also demonstrates benefits in drug-induced liver injury and NAFLD, with clinical trials showing reductions in ALT and improvements in serum albumin and bilirubin.
- NaringininaCientífico
Naringin protects against liver injury from high-fat diet, chemical toxins, and NAFLD/NASH by reducing hepatic lipid accumulation, restoring antioxidant enzyme activity, and modulating gut microbiota. A 2025 multi-omics study confirmed naringin restores hepatic lipid homeostasis and reshapes gut microbiota in diet-induced liver disease. Evidence is preclinical; no human hepatoprotection RCTs exist.
- nicotinamida ribósidoCientífico
Human clinical evidence suggests NR with other metabolic cofactors may improve liver health in NAFLD. Post-hoc analysis of a 12-week RCT in obese men showed a suggestion of improved fatty liver in the NR-treated group. Preclinical studies consistently show NR reduces hepatic steatosis, fibrosis, oxidative stress, and lipid accumulation in diet-induced NAFLD models by activating hepatic sirtuin pathways and restoring NAD+ pools.
- nopalCientífico
Animal studies show nopal consumption significantly attenuates hepatic steatosis and oxidative stress in obese rats, reducing hepatic triglycerides by approximately 50% and decreasing liver injury biomarkers (ALT, AST). Nopal modulates hepatic lipid metabolism genes and improves liver insulin signaling. A 2023 PMC review of Opuntia's effects on liver health confirmed positive preclinical evidence across multiple Opuntia species. Human evidence for hepatoprotective effects is limited but mechanistically grounded.
- junciaCientífico
Hepatoprotective activity of C. rotundus is well-documented in preclinical studies. Ethyl acetate extract of rhizomes at 100 mg/kg significantly lowered serum liver enzymes (GOT, GPT, alkaline phosphatase, bilirubin) and protected hepatocytes in carbon tetrachloride-induced liver damage in rats.
- okraCientífico
Okra pods and roots exhibit hepatoprotective effects via antioxidant activity and boosting enzymatic antioxidant defense systems in multiple animal models. A 2022 PubMed-indexed study showed okra pectic polysaccharide ameliorated CCl4-induced acute liver injury in mice. A 2024 RCT in pre-diabetic adults found okra improved liver transaminase levels.
- ácido oleanólicoCientífico
OA has well-established hepatoprotective effects demonstrated in multiple animal models and acknowledged in Chinese pharmacopeia, where it is listed as a liver-protective drug. It reduces liver enzyme elevations, enhances antioxidant enzyme systems (SOD, GPx), and suppresses inflammation via PPARα and NF-κB pathways. Limited human data suggest potential benefit in hepatitis and liver fibrosis.
- ácidos grasos omega-3Científico
Omega-3 fatty acids have documented clinical effects on non-alcoholic fatty liver disease (NAFLD), reducing hepatic fat accumulation, liver enzymes (ALT, AST), and TG levels. A meta-analysis of 7 RCTs found omega-3 supplementation is a practical and effective treatment for NAFLD. Evidence is clearest for early-stage NAFLD, with less benefit in advanced NASH.
- cebollaCientífico
Onion and its constituents—especially quercetin—demonstrate hepatoprotective effects by reducing oxidative stress, inflammation, and liver enzyme levels. Human trial data show reductions in AST with onion supplementation. Preclinical studies demonstrate protection against chemical- and toxin-induced liver damage through antioxidant and anti-inflammatory mechanisms.
- uva de OregónCientífico
Oregon grape root is classified as a cholagogue and hepatic stimulant in herbal practice, promoting bile flow through the liver and gallbladder. Berberine shows hepatoprotective effects in multiple animal studies and in RCTs for NAFLD, with significant reductions in ALT, AST, and GGT. Traditional use across Native American, TCM, and Western herbal medicine specifically targets liver stagnation.
- bilis de bueyCientífico
Bile acids are synthesized in the liver and are the primary vehicle for hepatic excretion of cholesterol, endogenous metabolites, and xenobiotics into the intestinal lumen. Adequate bile flow is therefore integral to the liver's detoxification function. Exogenous bile acids from ox bile supplements act downstream of the liver in the intestinal lumen and do not directly enhance hepatic synthesis or bile flow; they do not substitute for prescription bile acid therapy in hepatic disease.
- paederia foetidaCientífico
P. foetida has demonstrated hepatoprotective activity in multiple preclinical models, protecting against CCl4- and paracetamol-induced liver damage. It significantly normalizes liver enzymes (ALT, AST, ALP) and activates the Nrf2/HO-1 antioxidant pathway in liver tissue. Traditional use in Chinese and Ayurvedic medicine for liver disorders is well-documented.
- ácido palmitoleicoCientífico
POA reduces hepatic lipid accumulation (steatosis) in preclinical NAFLD models and suppresses liver inflammatory signaling. It also modulates gut-liver axis dysbiosis, reducing hepatotoxic TMAO formation. Human-specific liver detoxification evidence is limited but plausible given the established lipokine mechanisms.
- panteteínaCientífico
Pantethine significantly increases hepatic CoA content, which is the rate-limiting cofactor for mitochondrial fatty acid beta-oxidation in the liver. Animal studies and limited human biopsy data indicate pantethine reduces hepatic steatosis and lipid peroxidation. It is postulated to regulate liver sterol biosynthesis and reduce fat accumulation in hepatocytes.
- perejilCientífico
Parsley exhibits hepatoprotective activity across multiple animal models: it reduces liver oxidative stress, normalises liver enzymes (ALT, AST, ALP), and protects hepatic tissue from toxic and diabetic insult. Myristicin induces hepatic glutathione S-transferase, a key phase II detoxification enzyme. Animal evidence is consistent; human data are limited.
- melocotónCientífico
Peach kernel extracts have been studied for inhibiting liver fibrosis and hepatic stellate cell activation in vitro, reflecting a long TCM use of peach kernel in liver conditions. Polyphenol-rich peach by-products also reduced hepatic steatosis in obese animals. Evidence is preclinical.
- peraCientífico
Pear pomace water extract (PPWE) demonstrated hepatoprotective effects in rats fed a high-fat/cholesterol diet, reducing hepatic lipid peroxidation and improving liver enzyme markers (ALT, AST). Pear also stimulates alcohol-metabolizing enzymes (alcohol dehydrogenase, aldehyde dehydrogenase), reducing blood alcohol and acetaldehyde burden — a traditional claim scientifically confirmed.
- phellodendron amurenseCientífico
Berberine from P. amurense protects the liver from chemical-induced hepatotoxicity, stimulates bile secretion and bilirubin discharge, and inhibits hepatic gluconeogenesis. TCM explicitly uses P. amurense for liver heat, jaundice, and hepatitis. Studies on berberine's preventive and curative effects on chemical-induced hepatotoxicity in rodents are cited in the literature (Fitoterapia 2000).
- fosfatidilcolinaCientífico
Phosphatidylcholine (PC) is an essential phospholipid critical to hepatocyte membrane integrity and lipid export from the liver. Polyenylphosphatidylcholine has been studied in alcoholic liver disease in a large VA multicenter RCT. A 2024 clinical trials review confirmed phospholipids reduce liver enzymes in clinical studies. Choline deficiency is established as a direct cause of hepatic steatosis.
- picrorhiza kurroaCientífico
Picrorhiza kurroa (Kutki) is a Himalayan herb with extensive use in Ayurvedic medicine for liver diseases, jaundice, and hepatitis. Its active constituent kutkin (picrosides I and II) demonstrates hepatoprotective effects including activation of FXR to regulate bile acid balance, antioxidant activity, and anti-cholestatic properties. Both traditional clinical use and preclinical evidence support liver detox applications.
- agalla de pistacia integerrimaCientífico
An aqueous extract of P. integerrima was found to have hepatocurative properties in CCl4-induced hepatic injury in rats (Khan et al., 2004). A combination of P. integerrima with Berberis lycium and Galium aparine demonstrated hepatoprotective effects in CCl4-treated rats. Traditional Ayurvedic use for 'yakrit roga' (liver disorders) is well established.
- PlatycodonCientífico
Platycodon root has documented hepatoprotective effects across multiple animal models, including protection against endotoxin-induced acute liver injury, high-fat-diet-induced NAFLD, and chemically induced liver fibrosis. Key markers including ALT, AST, and hepatic lipid accumulation are improved by PG fractions.
- raíz de platycodonCientífico
Platycodon root extracts and platycodin D exhibit hepatoprotective effects in multiple animal models of liver injury, including alcohol-induced, endotoxin-induced, chemotherapy-induced, and diabetic liver damage. Mechanisms include suppression of ALT/AST elevations, reduction of oxidative stress markers, and inhibition of NF-κB-driven hepatic inflammation.
- PolyporusCientífico
PUPS (Polyporus umbellatus polysaccharide) is a Chinese SFDA-approved drug for hepatitis B and liver cancer adjunct therapy. It accelerates liver cell repair, reduces serum transaminases, inhibits HBV antigen expression, and protects against chemically induced hepatic damage.
- pomeloCientífico
Pomelo coumarins isolated from the peel show hepatoprotective activity in human hepatic cell lines (LO2 cells) by suppressing ALT/AST and boosting antioxidant enzyme activity. Pomelo peel powder prevents hepatic inflammation and fibrosis in CCl4-treated rats. A 2026 Nature npj Science of Food study confirmed pomelo peel extract equivalently alleviates hepatic steatosis, oxidative stress, and inflammation in a diet-induced model.
- NopalCientífico
Animal studies demonstrate hepatoprotective effects of Opuntia extracts via antioxidant-mediated reduction of oxidative stress and lipid peroxidation in liver tissue. Cell studies in human hepatocytes show triglyceride reduction and ALT/AST suppression. Traditional use for liver support and hangover is extensive.
- PrunusCientífico
Prunus domestica extracts exhibit hepatoprotective activity in preclinical models. A fiber-containing extract ('Prunophyte') at 200 mg/kg showed laxative and hepatoprotective effects in a rat model of alcoholic liver disease. A 2025 in-vitro study used P. domestica subsp. syriaca extract on steatotic human hepatocytes (MASLD model) and showed beneficial effects on oxidative stress, lipid accumulation, and glucose uptake pathways.
- Pterocarpus marsupiumCientífico
P. marsupium demonstrates hepatoprotective activity in multiple preclinical models. Stem bark and leaf extracts normalize liver enzymes and improve hepatic histology in CCl4- and paracetamol-induced liver injury models in rats.
- punarnavaCientífico
Multiple preclinical studies have demonstrated hepatoprotective activity of B. diffusa extracts against toxic liver injury, showing reductions in serum ALT, AST, ALP, and bilirubin, and histopathological protection comparable to silymarin at some doses. It is traditionally used in Ayurveda for jaundice, hepatitis, and liver cirrhosis. Evidence comes from animal models; robust human trials are lacking.
- verdolagaCientífico
A 2021 double-blind RCT in NAFLD patients found purslane extract (12 weeks) significantly reduced liver enzyme markers ALT, AST, and GGT from baseline. A 2024 RCT (n=70, 700 mg/day) found purslane improved lipid profiles and antioxidant enzymes in NAFLD patients, with mixed effects on hepatic steatosis. In vitro studies confirm hepatoprotective activity against toxic injury.
- quercetinaCientífico
Quercetin modulates hepatic detoxification pathways by activating the Nrf2 transcription factor and upregulating phase I, II, and III xenobiotic-metabolizing enzymes. In animal studies, oral quercetin after CCl4 intoxication significantly reduced ALT/AST liver injury markers and restored antioxidant enzyme expression. Quercetin and its metabolite isorhamnetin have been shown in human cell line studies to reduce benzo[a]pyrene-induced cytotoxicity and BPDE-DNA adduct formation by modulating AhR and NRF2 pathways.
- rábanoCientífico
Multiple animal studies and one open-label human pilot study support radish's hepatoprotective and liver detoxification effects. Radish extracts reduce liver enzymes (ALT, AST), stimulate phase I and II detoxification enzymes, and activate the Nrf2/HO-1 antioxidant pathway. The human study used a Spanish black radish supplement and measured accelerated acetaminophen metabolism.
- RehmanniaCientífico
Rehmannia demonstrates hepatoprotective effects across multiple preclinical models, attenuating NAFLD, hepatic steatosis, and drug-induced hepatotoxicity. Catalpol activates AMPK/TFEB autophagy to reduce lipid accumulation; ajugol enhances lysosome-mediated lipophagy; and catalpol modulates CAR/Nrf2 pathways to protect against hepatotoxins. The herb is traditionally used in TCM to 'enter the liver channel' and nourish liver yin.
- rehmannia glutinosaCientífico
Rehmannia polysaccharides and oligosaccharides demonstrate hepatoprotective effects in animal models of chemical liver injury. Raffinose family oligosaccharides from RG significantly reduced CCl4-induced liver enzyme elevations (ALT, AST) and increased hepatic antioxidant enzymes. Anti-inflammatory effects on LPS-induced acute liver injury are also documented.
- hongo reishiCientífico
Reishi has documented hepatoprotective effects in preclinical models, confirmed by MSKCC. Antioxidative, anti-inflammatory, and NF-κB suppressive effects in liver tissue are well characterised. In TCM, reishi was used to support liver Qi and detoxification. Human evidence for liver 'detox' per se is lacking; rare cases of hepatotoxicity with poor-quality preparations have been documented.
- resveratrolCientífico
Multiple human RCTs have evaluated resveratrol for non-alcoholic fatty liver disease (NAFLD), with a comprehensive review identifying its potential for reducing liver fat accumulation and modulating liver enzyme levels. A meta-analysis of placebo-controlled trials found resveratrol had negligible overall effects on NAFLD markers in clinical studies, though preclinical evidence of hepatoprotection is robust. Results in humans are inconsistent across trials.
- raíz de ruibarboCientífico
Rhubarb root is a documented hepatoprotective agent in TCM and preclinical research, used for jaundice, liver inflammation, and fibrosis. Clinical evidence includes its use in chronic hepatic disease treatment and its anti-inflammatory, antifibrotic effects on liver tissue.
- café robustaCientífico
Multiple human cohort and mechanistic studies document that coffee consumption is inversely associated with liver enzyme levels (ALT, GGT) and chronic liver disease incidence. Both caffeine and chlorogenic acids—the dominant bioactives in robusta—contribute to hepatoprotective effects. In an animal model comparing arabica and robusta, both coffee species reduced liver triglyceride content and modulated hepatic gene expression linked to glucose and fat metabolism.
- romeroCientífico
Rosemary (Rosmarinus officinalis) and its active diterpenes carnosic acid and carnosol, along with rosmarinic acid, demonstrate hepatoprotective effects in preclinical studies through Nrf2 activation, antioxidant enzyme induction, and NF-κB inhibition. Animal studies show protection against CCl4 and APAP-induced liver injury. Traditional use as a liver tonic and cholagogue is documented in European herbal medicine.
- ácido rosmarínicoCientífico
Rosmarinic acid has well-documented hepatoprotective effects in preclinical models, reducing liver damage from chemical toxins (CCl4, LPS/D-galactosamine), cholestasis, and NAFLD via Nrf2 pathway activation, NF-κB suppression, and antioxidant enzyme induction. A comprehensive review (PMID 30780110) characterizes RA's hepatoprotective mechanisms as among its most robustly documented pharmacological properties.
- Rubia cordifoliaCientífico
Rubiadin, a major phytochemical constituent of R. cordifolia, demonstrated hepatoprotective effects comparable to silymarin in a CCl4-induced liver injury rat model, significantly reducing malondialdehyde and preserving glutathione. Additional preclinical studies confirm protection against acetaminophen and CCl4-induced hepatotoxicity. Ayurvedic and Unani traditions also recognize the herb for liver-supportive uses including jaundice.
- rutinaCientífico
Rutin is extensively studied for hepatoprotective activity, primarily in preclinical models. It activates Nrf2/HO-1 and NF-κB signaling pathways to protect hepatocytes from oxidative and inflammatory injury. A 2025 review in Basic & Clinical Pharmacology & Toxicology summarized evidence across multiple liver disease contexts.
- azafránCientífico
Saffron and its constituents have demonstrated hepatoprotective effects in human trials, including reductions in liver enzymes (ALT, AST) in patients with NAFLD and T2DM. Traditional Tibetan and Persian medicine has long used saffron for liver conditions. A clinical RCT in NAFLD patients showed reduced inflammatory, oxidative, and liver enzyme markers following saffron supplementation.
- SAMe (S-adenosyl-L-methionine)Científico
SAMe is a key methyl donor and glutathione precursor whose hepatic synthesis is depleted in chronic liver disease. Scientific evidence supports its role in ameliorating cholestasis, reducing liver injury markers, and preventing hepatic steatosis. A 2024 systematic review confirms promising improvements in liver parameters in fatty liver disease and hepatitis, though large high-quality RCTs remain limited.
- zarzaparrillaCientífico
Smilax glabra extracts have demonstrated hepatoprotective activity in multiple animal studies, attributed to resveratrol, oxyresveratrol, flavonoids, and saponins that reduce oxidative liver damage. A PMC-listed review confirms its hepatoprotective classification. Human trial data remain absent, but the preclinical evidence is mechanistically coherent.
- schisandraCientífico
Schisandra is one of the most documented hepatoprotective herbs in TCM, used for liver conditions since the Eastern Han Dynasty. Active lignans enhance cytochrome P450 activity, glutathione production, and Nrf2/ARE pathway activation, boosting phase I/II detoxification capacity. Small human trials in hepatitis B/C and NAFLD showed improved liver enzymes. Pharmaceutical derivatives (bifendate, bicyclol) are approved in China for hepatitis.
- EsquizandrinasCientífico
Schisandrins are the primary active lignans from Schisandra chinensis, a herb used in TCM for centuries specifically for liver disease. Preclinical studies demonstrate schisandrin enhances liver detoxification enzymes, reduces inflammatory cytokines, and attenuates fibrosis. Small clinical trials in hepatitis patients showed improvement in serum ALT levels.
- EsclerocioCientífico
Poria cocos polysaccharides exhibit hepatoprotective effects in preclinical models of alcoholic liver disease and fatty liver, reducing liver injury markers, lipid accumulation, and oxidative stress via Nrf2 and NF-κB signaling. TCM uses include protecting the liver from damp-heat and toxic insults.
- raíz de escrofulariaCientífico
Hepatoprotective activity of Scrophularia root is supported by in vitro studies showing protection of hepatocytes against toxic injury. Multiple pharmacological reviews list hepatoprotective activity as a confirmed biological activity of S. ningpoensis root. TCM also classifies the root as having detoxifying properties relating to the liver.
- secoisolariciresinol diglucósidoCientífico
SDG reduces hepatic lipid accumulation, normalizes liver enzymes (ALT, AST), prevents lipid peroxidation, and activates Nrf2-mediated antioxidant detoxification pathways in the liver. Studies in high-fat/high-fructose diet mice showed SDG normalized hepatic triglycerides, cholesterol, and lipid metabolic gene expression after 12 weeks. SDG also mitigates chemically induced liver toxicity via anti-apoptotic and anti-oxidative mechanisms.
- selenioCientífico
Selenium is an essential trace mineral required for synthesis of glutathione peroxidase and thioredoxin reductase—key antioxidant enzymes protecting hepatocytes from oxidative damage. Selenium deficiency impairs liver detoxification capacity and is associated with worse outcomes in liver disease. Clinical studies show selenium supplementation reduces oxidative stress markers and liver enzymes in hepatitis patients.
- sésamoCientífico
Sesame lignans — particularly sesamin and sesamol — have documented hepatoprotective effects in preclinical models, including protection against carbon tetrachloride-induced liver injury and modulation of liver enzymes. Sesamin has been shown in animal studies to restore liver enzyme function and detoxification capacity. Human evidence is indirect (via improved liver enzymes in clinical trials) and largely supported by preclinical data.
- hongo shiitakeCientífico
Lentinan inhibits hepatic fat accumulation and protects liver cells from toxic damage. Vitamin D-enriched shiitake extracts demonstrated significant hepatoprotective effects in immune-mediated hepatitis mouse models, reducing ALT/AST and improving liver histology. Traditional Chinese medicine has long used shiitake to support liver function and nourish the blood.
- Pimienta de SichuanCientífico
Z. bungeanum extracts have demonstrated hepatoprotective effects in rodent liver toxicity models, reducing ALT, AST, and lipid peroxidation. Z. bungeanum amides ameliorated NAFLD in HFD mice via AMPK/Nrf2 activation. Evidence is exclusively preclinical.
- árbol de sedaCientífico
A. julibrissin demonstrates hepatoprotective activity in preclinical models, protecting liver cells from toxic injury and modulating liver enzyme activity. TCM also classifies it as a herb that benefits the liver meridian. Formal clinical liver studies are lacking.
- silimarinaCientífico
Silymarin has the most robust clinical evidence for hepatoprotection. A 2023 systematic review of 29 RCTs (3,846 participants) confirmed its antioxidative, anti-inflammatory, and antifibrotic effects on liver enzymes. It is used in Europe as an adjunct for alcoholic liver disease, drug-induced liver injury, NAFLD, and viral hepatitis. Evidence for chronic HCV is mixed, with one large JAMA RCT showing no significant ALT reduction vs. placebo.
- smilaxCientífico
Hepatoprotective effects of Smilax extracts have been demonstrated in animal models of liver damage, and a study of S. regelii ethanol extract showed protection against CCl4-induced hepatocellular damage in rats. S. china polysaccharide activated Nrf2-ARE antioxidant pathways protecting against APAP-induced acute liver injury. The genus has a long traditional use across multiple systems for liver disease.
- SophoraCientífico
Oxymatrine and matrine from S. flavescens are approved in China for treatment of chronic hepatitis B and have documented hepatoprotective, anti-fibrotic, and antiviral properties. S. flavescens extract reduces liver injury markers (ALT, AST) in alcohol-induced liver disease models and has anti-hepatic fibrosis effects.
- guanábanaCientífico
A. muricata leaf extracts show hepatoprotective activity in rodent models of chemically induced liver damage, restoring liver function markers toward normal. Bilirubin-lowering and hepatoprotective effects have been demonstrated in multiple pre-clinical studies.
- espinacaCientífico
Spinach has documented hepatoprotective activity in animal models, attributed to its antioxidant phytochemicals reducing lipid peroxidation and supporting phase II detoxification enzymes. The 2025 ScienceDirect comprehensive review includes hepatoprotective properties among spinach's evidence-based biological activities.
- espirulinaCientífico
Spirulina, a blue-green algae rich in phycocyanin and chlorophyll, demonstrates hepatoprotective effects in preclinical models and emerging clinical trials, reducing liver enzyme markers and oxidative stress. A 2025 PMC review confirmed spirulina's capacity to reduce liver damage biomarkers and facilitate heavy metal elimination from the body. A 2024 comprehensive clinical trials review confirmed spirulina reduced liver enzymes in clinical studies.
- estigmasterolCientífico
Stigmasterol ameliorates hepatic steatosis, reduces fat accumulation, and modulates bile acid metabolism and lipogenic gene expression in high-fat diet animal models. It also reduced liver enzyme markers (ALT, AST) in toxicity models, supporting hepatoprotective activity.
- SulforafanoCientífico
Sulforaphane, an isothiocyanate from cruciferous vegetables (especially broccoli sprouts), is one of the most potent known activators of Nrf2, upregulating a battery of phase II hepatic detoxification and antioxidant enzymes. Clinical studies show sulforaphane reduces AFB1-DNA adducts and liver cancer biomarkers. It is a key compound in the literature on dietary support of hepatic detoxification.
- glucosinolato de sulforafanoCientífico
Sulforaphane glucosinolate (glucoraphanin) is the direct precursor to sulforaphane in broccoli and other cruciferous vegetables, converted by myrosinase to sulforaphane upon ingestion. It supports liver detoxification by generating sulforaphane, the most potent dietary activator of hepatic Nrf2-mediated phase II detoxification enzyme upregulation. It is specifically listed in CaringSunshine's hepatic detoxification database as a liver support compound.
- junco dulceCientífico
Animal studies confirm hepatoprotective activity of A. calamus extract, including amelioration of alcohol-induced hepatotoxicity and normalization of liver enzyme markers. A 2021 PMC mouse study demonstrated hepatoprotective and nephroprotective activity with histopathological and biochemical confirmation.
- SwertiaCientífico
Hepatoprotective activity is among the most rigorously studied properties of Swertia chirayita. Multiple preclinical studies demonstrate protection against CCl4-, paracetamol-, and D-galactosamine-induced liver injury via antioxidant and anti-inflammatory mechanisms. The genus has centuries of documented use in treating jaundice and hepatitis across Asian traditional medicine systems.
- TaurinaCientífico
Taurine is a principal hepatoprotective amino acid, conjugating bile acids, detoxifying hypochlorous acid into taurine-chloramine, and protecting hepatocytes from cytochrome P450 2E1-mediated oxidation. Clinical meta-analyses confirm taurine supplementation significantly reduces liver enzymes AST and ALT.
- cardoCientífico
Teasel root has documented TCM use as a liver tonic and is also used in European herbalism to 'clear liver obstructions and treat jaundice.' Preclinical pharmacological reviews confirm hepatoprotective activity among the established bioactivities of Dipsacus asper. No human clinical trials have evaluated liver detoxification endpoints.
- TerminaliaCientífico
T. chebula has documented hepatoprotective activity supported by animal studies and traditional pharmacopoeia use. It reduces serum liver enzymes (AST, ALT, LDH) and attenuates hepatic oxidative stress and inflammatory cytokines in experimental liver injury models. Traditionally, T. chebula is listed in the Ayurvedic Pharmacopoeia as a liver tonic and included in Triphala for liver and kidney support.
- Tinospora cordifoliaCientífico
T. cordifolia exerts hepatoprotective effects against chemical-induced liver damage (CCl4, paracetamol, ethanol), normalizing liver enzymes (SGOT, SGPT, ALT, AST, bilirubin) in experimental models. It also showed hepatoprotective and anti-stress activity in a study on chronic alcoholics. Preclinical evidence for liver protection is extensive.
- Trimetilglicina (TMG)Científico
Trimethylglycine (betaine) is a methyl donor used in liver detoxification pathways, particularly the betaine-homocysteine methyltransferase (BHMT) reaction that remethylates homocysteine to methionine, feeding into SAMe synthesis. Clinical trials demonstrate betaine anhydrous reduces hepatic fat, ALT, AST, and histological injury in NAFLD and alcoholic liver disease patients.
- tocotrienolesCientífico
Multiple RCTs demonstrate tocotrienols reduce liver enzymes (ALT, AST), hepatic steatosis, and inflammation in NAFLD patients. A 1-year placebo-controlled RCT in 87 hypercholesterolemic adults with NAFLD showed significantly higher hepatic normalization rates in the tocotrienol group. A 24-week RCT with δ-tocotrienol confirmed improved hepatocellular injury biomarkers.
- Trans-pterostilbenoCientífico
Pterostilbene reduces hepatic oxidative stress, attenuates NAFLD progression, and modulates lipid metabolism genes in multiple animal studies. A human combination trial (NR + pterostilbene) in NAFLD patients showed reduced markers of hepatic inflammation. PTE activates Nrf2, AMPK/mTOR, and SIRT1 pathways in liver cells.
- TriphalaCientífico
Triphala, the Ayurvedic polyherbal formulation of Terminalia chebula, Terminalia bellirica, and Phyllanthus emblica, has centuries of traditional use for hepatitis, gastritis, and liver support in Indian and Chinese medicine. Preclinical studies demonstrate hepatoprotective effects against CCl4-induced acute liver injury via Nrf2 activation and antioxidant mechanisms. Traditional clinical use for liver conditions is well-documented.
- cúrcumaCientífico
Turmeric's active constituent curcumin has been used in Ayurvedic medicine for liver diseases for centuries. Scientific evidence shows curcumin modulates NF-κB, TGF-β/Smad, and Nrf2 pathways relevant to hepatic inflammation, steatosis, and fibrosis. A meta-analysis of RCTs found curcumin significantly reduced AST and ALT in MAFLD patients. NIH LiverTox notes active evaluation for liver diseases, though rigorous clinical proof is still evolving.
- VainillaCientífico
Multiple preclinical studies demonstrate vanillin and vanillic acid protect the liver against chemically induced hepatotoxicity. Vanillin pretreatment in CCl4-treated rats significantly normalized liver enzymes (ALT, AST), inhibited lipid peroxidation, restored antioxidant enzymes (SOD, catalase, GSH), and prevented hepatic necrosis. All evidence is animal-based.
- vitamina ECientífico
Vitamin E is one of the few supplements with robust RCT evidence in non-alcoholic steatohepatitis (NASH), a form of liver disease driven by oxidative stress. The landmark PIVENS trial (n=247 adults, 800 IU/day for 96 weeks) showed significantly improved liver histology versus placebo. NIH's LiverTox database confirms these findings.
- WasabiCientífico
Wasabi isothiocyanates are potent inducers of hepatic Phase II detoxification enzymes—including glutathione S-transferase and HO-1—via Nrf2/Keap1-ARE pathway activation, a mechanism well-established in liver cell models. Wasabi's long-chain ITCs are reported to be substantially more potent than standard isothiocyanates (such as those in broccoli) at inducing Phase II enzymes. Animal data also show wasabi protects against liver fat deposition in metabolic syndrome models.
- BerroCientífico
Watercress's primary bioactive PEITC modulates hepatic phase I and phase II detoxification enzymes, a mechanism studied in animals and indirectly in humans through urinary metabolite analysis. The liver is the primary site of PEITC's detoxification activity, and PMC research confirms PEITC derived from dietary watercress achieves plasma concentrations sufficient to induce detox-related gene expression changes.
- MilenramaCientífico
Yarrow demonstrates hepatoprotective activity in animal models, reducing liver enzyme elevations and toxic liver injury. Its choleretic action (Commission E approved) supports hepatic clearance. The 2020 PMC study showed improvements in liver enzymes in diabetic rats treated with yarrow extract.
- Raíz amarillaCientífico
Berberine, the active constituent of Yellow Root, has well-documented hepatoprotective effects studied in multiple clinical trials and meta-analyses, improving liver enzyme levels, lipid metabolism, and bile acid regulation. A 2024 meta-analysis of RCTs confirmed berberine's efficacy in improving liver enzymes and lipid profiles in NAFLD patients. Yellow Root was also traditionally used for jaundice.
- ZeolitaCientífico
In vitro cell studies show zeolite clinoptilolite suppresses NF-κB, TNF-alpha, and IL-1B in liver cells and reverses adriamycin-induced liver damage. Animal studies show reduced heavy metal accumulation in the liver. Human clinical evidence for direct liver detoxification is indirect—reduced circulating heavy metals and contaminants that would otherwise accumulate in the liver. Robust clinical liver endpoint data in humans are absent.
- ZincCientífico
Zinc is an essential mineral required for hepatic alcohol metabolism enzymes (alcohol dehydrogenase, aldehyde dehydrogenase), phase II detoxification enzyme metallothionein induction, and liver regeneration. Zinc deficiency is common in alcoholic liver disease and cirrhosis. Clinical studies demonstrate zinc supplementation improves liver enzyme levels, reduces oxidative stress, and supports liver regeneration in chronic liver disease patients.
- AlfalfaTradicional
Alfalfa is traditionally described as a liver tonic and detoxifying agent in herbal medicine, with chlorophyll credited as the active constituent. Animal studies show alfalfa extract reduces liver enzyme elevations and histopathological liver damage. No human clinical trials support hepatoprotective use.
- albaricoqueTradicional
Apricot and related Prunus species (especially Japanese apricot, Prunus mume) have documented hepatoprotective properties in pharmacological reviews, including effects studied in liver disease patients. The Prunus armeniaca review (PMC9325146) lists hepatoprotective activity among the confirmed pharmacological effects. Traditional medicine uses apricot for liver support. Most human evidence relates to MK615, a Prunus mume extract.
- espárragoTradicional
Asparagus root infusions have been used in traditional European and Asian medicine for liver complaints including jaundice and congestive torpor of the liver, and the plant appears in pharmacopoeias listing hepatic indications. Animal studies show hepatoprotective effects against oxidative liver damage induced by high-cholesterol diets. No human RCT evidence for liver detoxification has been established.
- agracejoTradicional
Barberry (Berberis vulgaris) is a traditional European, Middle Eastern, and Ayurvedic herb used for liver conditions, jaundice, and bile stimulation, with berberine as its primary hepatoprotective constituent. Its traditional use as a cholagogue and liver tonic is documented across multiple medical traditions. Hepatoprotective activity is scientifically attributed to its berberine content.
- abedulTradicional
Birch buds have been used as cholagogues (bile-stimulating agents) particularly in Eastern European and Russian herbal traditions. Birch bark constituents including betulin have been studied for hepatoprotective activity in preclinical models. A small pilot study explored birch bark extract in chronic hepatitis C patients. Traditional use for liver support is documented.
- nuez negraTradicional
Animal studies suggest walnut extracts may protect the liver from oxidative stress and reduce liver fat accumulation. Traditional herbal practice classifies black walnut as a liver tonic and detoxifying agent. Human evidence for direct liver detoxification is absent.
- cardo benditoTradicional
Blessed thistle has a long traditional use as a hepatic tonic and liver stimulant, with documented use for jaundice, liver sluggishness, and liver complaints. The bitter constituents are thought to stimulate bile production and liver activity. Animal data suggest some hepatoprotective effects, but no human clinical trials confirm liver detoxification benefits.
- espino cervalTradicional
Buckthorn has a documented traditional use as a depurative — an herb believed to purify the blood and support liver function by expelling waste and toxins from the body. Traditional Chinese Medicine (TCM) also categorizes buckthorn as 'clearing toxins' and supporting liver function. These claims are not supported by clinical trial evidence.
- BupleurumTradicional
Bupleurum (Chai Hu) is one of the most important traditional Chinese medicine herbs for liver health, used for over 2000 years in formulas like Xiao Chai Hu Tang (Minor Bupleurum Combination) for liver Qi stagnation, hepatitis, and jaundice. Its active saikosaponins demonstrate anti-inflammatory and hepatoprotective effects in preclinical models. Clinical use in TCM for liver conditions is extensively documented.
- bupleurum falcatumTradicional
Bupleurum falcatum (Sickle-leaf hare's ear, Chai Hu) is the primary species used in TCM for liver Qi stagnation, hepatitis, and jaundice, with active saikosaponins demonstrating preclinical hepatoprotective effects. It is listed in authoritative hepatic ingredient databases as liver-support relevant. Traditional use for liver health in East Asian medicine is extensively documented.
Cleavers has traditional use for jaundice and liver support across European and Balkan herbalism, classified as a hepatic and depurative herb. A rodent study published in 2022 found significant hepatoprotective effects against APAP-induced liver damage. Human evidence is absent.
- maízTradicional
Corn silk has traditional use in Chinese medicine for liver conditions including jaundice and fatty liver, with documented hepatoprotective activity. Preclinical studies show corn silk extract reduces hepatic lipid accumulation and protects against toxic liver injury. Human clinical evidence is sparse.
- sello de oroTradicional
Goldenseal (Hydrastis canadensis) is a traditional Native American and Eclectic medicine herb for liver and digestive conditions, containing berberine as its primary hepatoprotective constituent. Traditional use for liver conditions, jaundice, and bile stimulation is well-documented. Its hepatoprotective activity derives primarily from its berberine content, which has documented scientific evidence for liver enzyme reduction.
- guggulTradicional
Guggul is described in Ayurveda as a liver stimulant and is used in formulations for liver conditions including liver abscess and hepatic dysfunction. Preclinical studies suggest guggulipid may have hepatoprotective antioxidant effects, but clinical hepatoprotective trials are absent.
- holarrhena antidysentericaTradicional
H. antidysenterica is used in Ayurveda and Unani for liver disorders, jaundice, biliousness, and hepatosplenomegaly. A preclinical review characterizes hepatoprotective properties attributable to antioxidant and anti-inflammatory mechanisms. No human hepatology trials have been published.
- aceboTradicional
The juice of fresh I. aquifolium leaves has a documented traditional use for treating jaundice, suggesting a historical association between holly and liver function. The 2022 preclinical study also found reduced liver adiposity with I. aquifolium fractions.
- Árbol de goma arábiga indioTradicional
Acacia nilotica is traditionally used in Mali and Sudan for liver diseases. Animal studies confirm hepatoprotective effects of A. nilotica extract against acetaminophen-induced liver damage, with improvements in ALT, AST, and GSH. Gum arabic supplementation in haemodialysis patients significantly reduced liver enzyme markers.
- hierba nudosaTradicional
In traditional Chinese medicine, Hu Zhang (P. cuspidatum) is classified as entering the liver and gallbladder meridians and is used to disperse blood stasis, eliminate toxins, and resolve damp-heat in liver disorders. It is listed in the Chinese Pharmacopoeia for removing dampness and reducing jaundice. Resveratrol has shown hepatoprotective activity in preclinical models.
- hierba limónTradicional
Lemongrass demonstrates hepatoprotective effects in animal studies, protecting against paracetamol- and oxidative stress-induced liver damage. A Springer book chapter confirms hepatoprotective effects of C. citratus in preclinical models. Traditional use for liver and digestive system complaints is documented. No human clinical trials exist.
- lilaTradicional
Traditional Chinese medicine records Syringa use for acute icteric hepatitis, documented in peer-reviewed genus reviews. S. oblata (a related Syringa species) has in vivo and clinical-level data on hepatoprotection. S. vulgaris extract showed hepatoprotective activity in animal experiments. These uses are traditional but supported by preclinical data.
- MomordicaTradicional
Momordica charantia is used in traditional medicine across Africa and Asia for liver diseases including hepatitis and jaundice. Preclinical evidence demonstrates hepatoprotective and antioxidant activity in liver tissue. Clinical hepatoprotective relevance in humans has not been established in RCTs.
- Árbol de neemTradicional
Neem is classified as a 'detoxifying' herb in Ayurveda and Unani medicine, traditionally used to purify blood and support liver function. Preclinical studies show neem extracts protect liver cells from CCl4- and paracetamol-induced damage, with nimbolide showing hepatoprotective effects comparable to silymarin in animal models. Human clinical evidence for liver protection specifically is absent.
- mastuerzoTradicional
Pennycress is classified as a hepatic (liver-supporting) herb in both European and Chinese traditional medicine and was traditionally used to increase bile secretion and 'cleanse toxins.' The plant has been described as a depurative and blood purifier in multiple traditions. No clinical trials have evaluated hepatoprotective effects specifically.
- raíz rojaTradicional
Red root is classified as hepatoprotective and hepatorestorative in naturopathic herbalist monographs, with documented traditional use for liver conditions including fatty liver and hepatitis. 19th-century herbalists and homeopathic materia medica also list liver complaints as an indication. No controlled human trials on hepatic function have been published.
- RhodiolaTradicional
Rhodiola rosea has documented hepatoprotective properties in pre-clinical models, including reduction of liver lipid peroxidation and transaminase levels and enhancement of hepatic antioxidant enzyme activity. These effects have not been demonstrated in controlled human trials, and 'liver detox' as a specific clinical outcome has not been investigated in humans. The traditional use for liver support is cross-referenced in herbal monographs.
- acedera de ovejaTradicional
Sheep's sorrel has a documented traditional role as a 'depurative' and liver tonic in folk herbal medicine, used to support liver function and detoxification. Genus-level scientific data suggest hepatoprotective activity. No human clinical data exist for R. acetosella.
- bolsa de pastorTradicional
Shepherd's purse is documented in Russian and Eastern European folk medicine for liver and gallbladder complaints. Preclinical studies confirm hepatoprotective effects, including a rat study showing protection against chemically induced hepatocarcinoma. Multiple pharmacological reviews classify it as having hepatoprotective pharmacological activity.
- escutelariaTradicional
S. baicalensis has documented hepatoprotective activity against multiple types of liver injury in preclinical models, including xenobiotic and toxic liver damage. TCM has used Huang Qin for jaundice and liver disease for over 2,000 years. The term 'liver detox' maps to hepatoprotection from toxic injury, where baicalin's mechanisms are well-documented.
- steviaTradicional
Stevia has traditional use in South American herbal medicine for liver support. In vitro and animal studies show stevia extracts exert hepatoprotective effects, reducing liver injury markers (AST, ALT), inhibiting hepatic steatosis, and protecting against chemically induced liver damage. No human clinical trials specifically targeting liver detoxification endpoints have been conducted.
- StillingiaTradicional
Stillingia was traditionally used for liver congestion and torpid liver conditions in Eclectic medicine, classified as a cholagogue and hepatic stimulant. Historical texts document its use for liver affections alongside lymphatic and skin conditions. No clinical evidence exists.
- hierba de trigoTradicional
Wheatgrass has been used as a liver detoxifying agent since the 1930s, popularized by Ann Wigmore and naturopathic traditions. Animal studies show hepatoprotective effects with normalized liver enzymes under toxic exposure. Human clinical evidence for liver detoxification specifically is absent.
- YuccaTradicional
Liver disorders are listed among the traditional oral indications for yucca by Drugs.com, Rxlist, and traditional medicine references. Native American and folk medicine traditions described yucca as a body-cleansing and detoxifying plant. No human hepatic function clinical trial for yucca exists.