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  3. Amino Acid Derivatives

Amino Acid Derivatives

Amino Acid Derivatives are bioactive molecules formed through chemical modifications or metabolic transformations of amino acids. They are widely present in living organisms and play crucial roles in physiological, psychological, and athletic performance.
The functions of these derivatives primarily include enhancing energy supply, regulating neurotransmitters, promoting fat metabolism, and reducing muscle damage. For example, creatine can increase muscle strength, enhance ATP resynthesis, and improve short-duration high-intensity exercise performance; tyrosine, as a precursor of dopamine and norepinephrine, helps enhance cognitive function and improve mood, particularly in sleep deprivation conditions, exhibiting anti-fatigue effects; carnitine facilitates fatty acid oxidation in the heart and skeletal muscles, improving endurance performance; HMB (β-hydroxy-β-methylbutyrate) reduces muscle breakdown and promotes muscle mass gain; while taurine exhibits antioxidant and antihypertensive properties and reduces oxidative stress induced by exercise.
Metabolic abnormalities or improper supplementation of amino acid derivatives may be associated with various diseases. For instance, tyrosine metabolism disorders can disrupt neurotransmitter balance, potentially leading to depression or stress-related disorders; elevated ADMA (asymmetric dimethylarginine) levels can inhibit nitric oxide synthesis, increasing the risk of cardiovascular diseases; carnitine deficiency is linked to certain genetic muscle disorders, impairing fat metabolism and energy production. Additionally, HMB may help slow muscle loss under specific conditions, while taurine intake is associated with improved cardiovascular health. Although some of the effects of these derivatives remain debated, they hold significant potential applications in sports nutrition, neurological regulation, and metabolic health.

Amino Acid Derivatives Related Products (1590):

Cat. No. Product Name Effect Purity Chemical Structure
  • HY-W042478
    (S)-3-(Boc-amino)-4-phenylbutyric acid
    (S)-3-(Boc-amino)-4-phenylbutyric acid is a phenylalanine derivative.
    (S)-3-(Boc-amino)-4-phenylbutyric acid
  • HY-W012104
    Z-D-Ser-OH
    99.54%
    Z-D-Ser-OH is a serine derivative.
    Z-D-Ser-OH
  • HY-W011089
    Fmoc-β-HoLeu-OH
    98.43%
    Fmoc-β-HoLeu-OH is a leucine derivative.
    Fmoc-β-HoLeu-OH
  • HY-W018850
    L-Isovaline
    99.90%
    L-Isovaline is a valine derivative.
    L-Isovaline
  • HY-W111382
    2,2'-((((9H-Fluoren-9-yl)methoxy)carbonyl)azanediyl)diacetic acid
    99.87%
    2,2'-((((9H-Fluoren-9-yl)methoxy)carbonyl)azanediyl)diacetic acid is a Glycine (HY-Y0966) derivative.
    2,2'-((((9H-Fluoren-9-yl)methoxy)carbonyl)azanediyl)diacetic acid
  • HY-W018489
    H-Asp(OtBu)-OMe.HCl
    ≥98.0%
    H-Asp(OtBu)-OMe.HCl is an aspartic acid derivative.
    H-Asp(OtBu)-OMe.HCl
  • HY-W012487
    H-Phe(3-Cl)-OH
    98.59%
    H-Phe(3-Cl)-OH is a phenylalanine derivative.
    H-Phe(3-Cl)-OH
  • HY-79404A
    Boc-beta-t-butyl-d-alanine
    98.87%
    Boc-beta-t-butyl-d-alanine is an intermediate, can be used in the synthesis of peptides and other amino acids.
    Boc-beta-t-butyl-d-alanine
  • HY-44070
    N-(tert-Butoxycarbonyl)-O-(tert-butyl)-L-threonyl-L-proline
    N-(tert-Butoxycarbonyl)-O-(tert-butyl)-L-threonyl-L-proline is a proline derivative.
    N-(tert-Butoxycarbonyl)-O-(tert-butyl)-L-threonyl-L-proline
  • HY-W001037
    3,5-Diiodo-D-tyrosine
    99.03%
    3,5-Diiodo-D-tyrosine is a tyrosine derivative.
    3,5-Diiodo-D-tyrosine
  • HY-W002237
    2-Amino-2-(4-chlorophenyl)acetic acid
    ≥98.0%
    2-Amino-2-(4-chlorophenyl)acetic acid is a Glycine (HY-Y0966) derivative.
    2-Amino-2-(4-chlorophenyl)acetic acid
  • HY-W008297
    Z-Thr-OMe
    99.33%
    Z-Thr-OMe is a threonine derivative.
    Z-Thr-OMe
  • HY-W009403
    Boc-D-2-Pal-OH
    Boc-D-2-Pal-OH is an alanine derivative.
    Boc-D-2-Pal-OH
  • HY-W013300
    Boc-N-Me-Phe-OH
    99.70%
    Boc-N-Me-Phe-OH is a phenylalanine derivative.
    Boc-N-Me-Phe-OH
  • HY-20838B
    (S)-2-Amino-2-(tetrahydro-2H-pyran-4-yl)ethanoic acid
    ≥98.0%
    (S)-2-Amino-2-(tetrahydro-2H-pyran-4-yl)ethanoic acid is a Glycine (HY-Y0966) derivative.
    (S)-2-Amino-2-(tetrahydro-2H-pyran-4-yl)ethanoic acid
  • HY-W015177
    H-Phe(3-CN)-OH
    99.75%
    H-Phe(3-CN)-OH is a phenylalanine derivative.
    H-Phe(3-CN)-OH
  • HY-W010984
    (S)-2-((((9H-Fluoren-9-yl)methoxy)carbonyl)amino)-3-(o-tolyl)propanoic acid
    99.79%
    (S)-2-((((9H-Fluoren-9-yl)methoxy)carbonyl)amino)-3-(o-tolyl)propanoic acid is a phenylalanine derivative.
    (S)-2-((((9H-Fluoren-9-yl)methoxy)carbonyl)amino)-3-(o-tolyl)propanoic acid
  • HY-W014373
    L-Lysine ethyl ester dihydrochloride
    L-Lysine ethyl ester dihydrochloride is a lysine derivative.
    L-Lysine ethyl ester dihydrochloride
  • HY-77635
    Z-D-Chg-OH
    Z-D-Chg-OH is a glycine derivative that can be used for amino acid synthesis.
    Z-D-Chg-OH
  • HY-W008942
    Z-Leu-OH.DCHA
    99.85%
    Z-Leu-OH.DCHA is a leucine derivative.
    Z-Leu-OH.DCHA