Evidence supporting the use of: Sea Cucumber
For the health condition: Triglycerides (high)
Synopsis
Source of validity: Scientific
Rating (out of 5): 2
Sea cucumber (Holothuroidea) has been investigated in scientific studies for its potential lipid-lowering effects, including possible impacts on serum triglyceride levels. Several animal studies have reported that sea cucumber extracts can reduce triglyceride and cholesterol concentrations in rodents fed high-fat diets. The proposed mechanisms involve bioactive compounds such as saponins, glycosaminoglycans, and omega-3 fatty acids, which may influence lipid metabolism, enhance antioxidant defenses, and modulate enzymes involved in lipid synthesis and clearance.
For example, a study published in the journal Marine Drugs (2015) found that sea cucumber supplementation attenuated lipid accumulation and improved serum triglyceride profiles in rats. Another study in Food & Function (2017) suggested that saponins from sea cucumber reduced serum triglyceride and cholesterol levels in mice, possibly by modulating gene expression related to lipid metabolism.
However, evidence in humans is very limited. There are few, if any, robust clinical trials directly investigating sea cucumber’s effects on triglyceride levels in humans. Most data come from in vitro or animal models, which do not always translate to similar effects in people. Therefore, while early scientific evidence suggests a possible triglyceride-lowering effect, the overall quality and quantity of evidence is low, justifying a modest evidence rating.
Other ingredients used for Triglycerides (high)
akkermansia muciniphilaalgal oil
alpha-linolenic acid (ALA)
anchovies
anthocyanins
apple
arjun tree
artichoke
ashwagandha
astaxanthin
banaba
beet
berberine
bergamot
Beta-Glucan
black currant
black garlic
sesame
black tea
blueberry
broccoli
calamari oil
canola oil
catechins
chia seed
chokeberry
choline
coleus forskohlii
conjugated linoleic acid (CLA)
cordyceps
daidzin
DHA (docosahexaeonic acid)
diallyl disulfide (DADS)
diallyl trisulfide (DATS)
DPA (docosapentaenoic acid)
EPA (eicosapentaenoic acid)
epigallocatechin gallate (EGCG)
fish protein
flaxseed
fruit and vegetable blend (proprietary)
genistein
genistin
glucomannan
grape
grapefruit
green tea
guar gum
guggul
hawthorn
hesperetin
hibiscus
inulin
knotweed
kale
krill oil
kudzu
l-carnitine
l-taurine
lecithin
lignans
linoleic acid (LA)
lycopene
mackerel
magnesium
maqui berry
matcha
naringin
niacin (vitamin B3)
oat
oleanolic acid
oleic acid
olive
omega-3 fatty acids
omega-7 fatty acids
omega-9 fatty acids
oyster mushroom
palmitoleic acid
pantethine
perilla
phospholipids
pine bark
plant sterols
pomegranate
pomelo
quercetin
quinoa
red yeast rice
resveratrol
safflower oil
sardines
silymarin
black ginger
soybean
spirulina
sterols
stevia
strawberry
tocotrienols
tomato
trans-pterostilbene
trimethylglycine (TMG)
almond fruit
ubiquinol
vegetable and fruit blend (proprietary)
vitamin C
mulberry
zinc
β-nicotinamide mononucleotide (NMN)
jiaogulan
lingzhi
sunflower
yerba mate
goji berry
amaranth
kidney beans
cocoa
AMP-activated protein kinase (AMPK)
ashitaba
3-(4-hydroxy-3-methoxyphenyl)prop-2-enoic acid
4-hydroxyisoleucine
Arjuna
Aronia melanocarpa
Avocado
Ascophyllum nodosum
Alpha-Lipoic Acid
Astragaloside
Adzuki bean
Ampelopsin
Alpha phytosterol
Algal protein
Arjunic Acid
Algalin
Alliin
Arabinoxylan
Argan nut oil
alpha Methyl Tetradecylthioacetic Acid
Arjunolic acid
Buglossoides arvensis
Brutieridin
Brassica
Brazil nut
Buckwheat
Bottle gourd
California chia
Cardarine
Chitosan
Camelina Oil
Cod Liver Oil
Coriander
Cashew
Cyanidin
chlorogenic acid
Chinese Fleeceflower
Cynarin
Cruciferous
Capsiate
Chitin-Glucan Complex
Calanus finmarchicus
Crocetin
corosolic acid
Crypthecodinium
Carnosic acid
Docosahexaenoic Acid
Danshen
Daidzein
Dragon Fruit
Diosgenin
Eriocitrin
Emblicanin
Eicosatetraenoic acid
Eicosapentaenoic Acid
Echium
Ecklonia
Flammulina velutipes
Isoflavones
Pistachio
Soy Protein
walnut