Evidence supporting the use of: Amino acids
For the body system: Hepatic System

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Synopsis

Source of validity: Scientific
Rating (out of 5): 4

Amino acids play a critical role in supporting the hepatic (liver) system, and their use is justified by scientific evidence. The liver is central to amino acid metabolism; it is responsible for the synthesis, catabolism, and conversion of amino acids into other biomolecules. In clinical settings, amino acids are included in medical nutrition therapy for patients with liver diseases such as cirrhosis, hepatic encephalopathy, and liver failure. Specific amino acids, such as branched-chain amino acids (BCAAs: leucine, isoleucine, and valine), have been shown in randomized controlled trials and meta-analyses to improve outcomes in patients with hepatic encephalopathy by supporting nitrogen metabolism and reducing neurotoxic ammonia levels.

Furthermore, the liver requires a continuous supply of certain amino acids, such as methionine and cysteine, for the synthesis of glutathione, a key antioxidant that protects hepatocytes from oxidative stress. Protein-energy malnutrition is common in advanced liver disease, and supplementation with amino acids can help maintain muscle mass and overall protein balance. Guidelines from hepatology and nutrition societies recommend the use of amino acid supplementation, particularly BCAAs, in specific liver conditions. However, the evidence is stronger for hepatic encephalopathy and less robust for other liver diseases. Overall, the role of amino acids in liver health is well-supported by mechanistic, clinical, and nutritional research.

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Other ingredients that support Hepatic System

AHCC
Algae
alpha-lipoic acid
amino acids
AMP-activated protein kinase (AMPK)
ampelopsin
andrographolide
animal protein
Antrodia camphorata
apigenin
Arginine carglumate
artichoke
baicalein
barberry
Basidiomycota
Beef liver
berberine
berry
betanin
bile acid
bile salt
bitter principals
black garlic
black seed
Boerhavia diffusa
boldo
borotutu
bovine
bovine liver
Brassica
broccoli
Bupleurum
bupleurum falcatum
capers
capillary artemisia
carqueja
catalpol
chanca piedra
Chinese thoroughwax
chlorogenic acid
cholic acid
Coenzyme A
corilagin
cruciferous
Curcuma
curcumin
Curcuminoid
cynarin
cynaropicrin
d-glucarate
dandelion
dehydrocholic acid
dihydrolipoic acid
dihydromyricetin
dithiolthiones
DL-Methionine
Eclipta
egg
emblicanin
epigallocatechin gallate (EGCG)
eriocitrin
ferulic acid
flavonolignan
fringetree
fungus
gallate
gamma-glutamylcysteine
ganoderma
garlic bulb
gentian root
Gentiana manshurica
Ginsenosides
glucose
Glycochenodeoxycholic acid
Glycocholic acid
Glycyrrhetinic acid
Glycyrrhizin
gooseberry
green tea
Guggulsterones
Gypenoside
herbal blend (proprietary)
hesperetin
isoliquiritigenin
isosilybin
jiaogulan
Jurubeba
kale
Kutkins
L-glutathione
L-methionine
L-ornithine
lecithin
lingzhi
liquid liver fractions
mangiferin
Maslinic acid
Matcha
Milk thistle
Monoterpenes
Mushroom
Myricetin
N-acetyl-cysteine (NAC)
Naringenin
Naringin
Niacin (vitamin B3)
Niacinamide (vitamin B3)
nicotinamide riboside
Nigella seed
Nobiletin
oleanolic acid
olive
ornithine L-aspartic acid
ox bile
Oxymatrine
pantethine
parsley
Pentacyclic triterpenoids
phenolic compounds
Phenylpropanoids
phosphatidylcholine
phospholipids
Phthalides
Phyllanthus
picrorhiza kurroa
Picroside
Plukenetia volubilis
Polydatin
polymethoxylated flavones
polyphenols
pu-er tea
Puerarin
pumpkin
punarnava
riboflavin (vitamin B2)
S-allylcysteine
Salvianolic acid
Schisandrins
Schizandrol A
Scoparia dulcis
Sesamin
Silybin
Silybum
Silychristin
Silydianin
silymarin
Sulforaphane
sulforaphane glucosinolate
Taraxacum
Taurochenodeoxycholic acid
Taurocholic acid
Taurodeoxycholic acid
Taxifolin
Terminalia
Terpenoids
Theabrownin
Thistle
Thymoquinone
tocotrienols
trace minerals
Trimethylglycine (TMG)
Triphala
Triterpenes
turmeric
vitamin B
Watercress
Wogonin
Xanthohumol
Xanthorrhizol
Yin Chen
Zinc

Products containing amino acids

Douglas Laboratories Free Form Amino