Heavy Metal Chelation : Glutathione's sulfur-containing cysteine residue has a strong affinity for heavy metals like mercury and lead
Aqua(Water), Centella Asiatica Leaf Water, Butylene Glycol, Propanediol, Niacinamide, 1,2-Hexanediol, Glycerin, Diethoxyethyl Succinate, Panthenol, Hydroxyacetophenone, Sodium Polyacryloyldimethyl Taurate, Styrene/Acrylates Copolymer, Allantoin, Glutathione, Cellulose Gum, Adenosine, Disodium EDTA, Citric Acid, Dipotassium Glycyrrhizate, Xanthan Gum, Inulin, Glyceryl Acrylate/Acrylic Acid Copolymer, Cellulose, Fructose, Glucose, Dipropylene Glycol, Squalane, C12-14 Alketh-12, Asiaticoside, Madecassic Acid, Asiatic Acid, Sodium Hyaluronate, Melaleuca Alternifolia (Tea Tree) Leaf Extract, Hippophae Rhamnoides Fruit Extract, Hydrolyzed Collagen, Beta-Glucan, Caprylyl Glycol, Nelumbium Speciosum Flower Extract, Artemisia Annua Extract, Oryza Sativa (Rice) Extract, Saccharomyces Ferment, Solanum Melongena (Eggplant) Fruit Extract

Key effects associated with TB-500: Soft tissue repair support Cell migration Angiogenesis Reduced inflammatory signaling Improved tissue remodeling Possible cardiac and neurologic repair effects in preclinical models Like BPC-157, most TB-500 data remains preclinical
This guide explains what BPC-157 and TB-500 are, why patients are seeking them, what current research supports and importantly, where the evidence falls short