Evidence supporting the use of: Collagen
For the health condition: Athletic and Exercise Aids

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Synopsis

Source of validity: Scientific
Rating (out of 5): 3

Collagen supplementation has gained popularity among athletes and active individuals for its potential to support joint health, reduce exercise-induced joint pain, and aid in the maintenance of connective tissue integrity. The scientific evidence supporting collagen’s role as an athletic and exercise aid is moderate but growing. Several randomized controlled trials have examined collagen hydrolysate supplementation and found beneficial effects on joint pain in athletes. For example, a 2008 study published in Current Medical Research and Opinion reported that 10 g/day of collagen hydrolysate over 24 weeks significantly reduced joint pain in athletes compared to placebo. More recent studies have shown that collagen supplementation may improve tendon and ligament properties and support muscle recovery when combined with resistance training.

The proposed mechanisms involve the provision of amino acids (notably glycine, proline, and hydroxyproline) that are important for collagen synthesis in connective tissues, as well as potential stimulation of endogenous collagen production. While these findings are promising, the number of high-quality studies is still limited, and results can be variable depending on the population and type of collagen used. Current evidence justifies collagen’s use as a supportive aid for joint and connective tissue health in physically active people, but further large-scale, long-term studies are required to establish definitive recommendations for its routine use in sports nutrition.

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Other ingredients used for Athletic and Exercise Aids

1,3,7-Trimethylpurine-2,6-dione
7-Keto-DHEA
Acetyl L-carnitine
Acetyl-L-Tyrosine
adenosine 5-triphosphate disodium (ATP)
Adenosine triphosphate (ATP)
Agmatine
Algae
Algal protein
Alpha D-ribofuranose
Alpha glyceryl
Alpha hydroxyisocaproic acid
alpha-ketoglutarate (AKG)
Alpha-ketoisocaproic acid
amino acids
antler
arachidonic acid
arginine alpha ketoglutarate
Arginine aspartate
arginine creatine
Arginine malate
Arginine nitrate
Arginine silicate
ashwagandha
astaxanthin
ba ji tian
bacillus subtilis
BCAA
bee pollen
Beef Protein
beet
beta-alanine
bicarbonate
black ginger
black tea
bovine
bovine protein
branched-chain amino acids
brown rice protein
Bulbine natalensis
caffeine
Camellia sinensis
capsaicinoids
capsiate
capsicum
capsinoids
cardarine
casein
cistanche
citrate malate
cocoa
coconut
coenzyme Q10 (CoQ10)
collagen
colostrum
conjugated linoleic acid (CLA)
cordyceps
creatine
creatine monohydrate
curcumin
D-Aspartic Acid
D-Ribose
deer velvet
dihydrocapsiate
ecdysteroids
ecdysterone
electrolytes blend (proprietary)
eleuthero
elk antler
Ephedra
ephedrine
Ethyl-Alpha-Guanido-Methyl-Ethanoate
Eurycoma Longifolia
eurycomanone
Fadogia agrestis
ginseng
Ginsenosides
glucose
Glutamine
Glycerol
Glycocyamine
GMS-ribose
green tea
guanidinoacetic acid
guarana
Guaranine
guayusa
Higenamine
HMB hydroxymethylbutyrate
horny goat weed
hydroxymethylbutyrate
Isoleucine
isomaltulose
jiaogulan
ketone salts
kola nut
L-alanine
L-alanyl-L-glutamine
L-arginine
l-carnitine
L-citrulline
L-glutamine
L-glycine
l-isoleucine
L-leucine
L-ornithine
L-taurine
l-tyrosine
L-valine
lactalbumin
Laxogenin
maca
macaenes
macamides
magnesium
maral root
Mate
Methylliberine
Methylxanthine
Milk Protein
Mineral ascorbate
Muira puama
Mushroom
Nitrous Malate (TM) Diarginine Malate
omega-3 fatty acids
Ornithine
ornithine alpha-ketoglutarate
Palatinose
paraxanthine
Peppermint
Peptides
Phosphatidic Acid
Phosphocreatine
Phytoecdysteroid
Piper nigrum
protein
pyridoxal-5-phosphate (P-5-P)
pyrroloquinoline quinone
pyruvate
Quinoa Protein
Rhaponticum
Rhodiola
ribose
robusta coffee
Safed musli
salt
sea salt
Sida cordifolia
spirulina
suma
Synephrine
Teacrine
Theacrine
Theobromine
Tongkat ali
tribulus
Tribulus Terrestris
Trichilia catigua
Trichopus zeylanicus
Turkesterone
Valine alpha-hydroxyisocaproate
vitamin C
Watermelon
Whey protein
Xanthine
Yerba mate
Yohimbine