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  2. Clinical trials on glucosamine and chondroitin - Wikipedia

    en.wikipedia.org/wiki/Clinical_trials_on_glucos...

    A significant amount of research has been performed on glycosaminoglycans, especially glucosamine and chondroitin, for the treatment of arthritis.These compounds are commonly marketed as nutritional supplements and numerous 'soft therapeutic claims' are made about their health benefits - especially in aging populations. [1]

  3. N-Acetyl-L-tyrosine - Wikipedia

    en.wikipedia.org/wiki/N-Acetyl-L-tyrosine

    N-Acetyl-L-tyrosine is an amino acid, ... It is used for parenteral nutrition and as a dietary supplement. [1] [2] [3] See also. Acetylcarnitine; Acetylcysteine;

  4. Tyrosine - Wikipedia

    en.wikipedia.org/wiki/Tyrosine

    In addition to the common amino acid L-tyrosine, which is the para isomer (para-tyr, p-tyr or 4-hydroxyphenylalanine), there are two additional regioisomers, namely meta-tyrosine (also known as 3-hydroxyphenylalanine, L-m-tyrosine, and m-tyr) and ortho-tyrosine (o-tyr or 2-hydroxyphenylalanine), that occur in nature.

  5. Nitrotyrosine - Wikipedia

    en.wikipedia.org/wiki/Nitrotyrosine

    Nitrotyrosine is a product of tyrosine nitration mediated by reactive nitrogen species such as peroxynitrite anion and nitrogen dioxide. Nitrotyrosine is identified as an indicator or marker of cell damage, inflammation as well as NO (nitric oxide) production. Nitrotyrosine is formed in the presence of the active metabolite NO.

  6. Levothyroxine - Wikipedia

    en.wikipedia.org/wiki/Levothyroxine

    T 4 is biosynthesized from tyrosine. Approximately 5% of the US population suffers from over- or underproduction of T4 and T3. See Thyroid hormones § Thyroid metabolism for more information on its biosynthesis. [citation needed] Industrially, levothyroxine is made by chemical synthesis. Tyrosine is a common starting material. [36]

  7. Tyrosine hydroxylase - Wikipedia

    en.wikipedia.org/wiki/Tyrosine_hydroxylase

    Tyrosine hydroxylase or tyrosine 3-monooxygenase is the enzyme responsible for catalyzing the conversion of the amino acid L-tyrosine to L-3,4-dihydroxyphenylalanine (L-DOPA). [ 5 ] [ 6 ] It does so using molecular oxygen (O 2 ), as well as iron (Fe 2+ ) and tetrahydrobiopterin as cofactors .