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Catalog Number:
21610
CAS Number:
870-93-9
DL-Homocystine
Synonym(s):
Acide DL-4,4'-Dithio-bis-2-aminobutanoïque
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Product Information

DL-Homocystine is a vital amino acid derivative that plays a significant role in various biochemical processes, particularly in the metabolism of sulfur-containing amino acids. This compound is recognized for its potential applications in the fields of biochemistry and clinical research, especially in studies related to cardiovascular health and homocysteine metabolism. Researchers utilize DL-Homocystine to explore its effects on cellular functions and its implications in conditions such as cardiovascular diseases and neurological disorders. Its unique disulfide bond structure enhances its stability and reactivity, making it an essential tool for scientists investigating protein interactions and metabolic pathways.

In addition to its research applications, DL-Homocystine is also being studied for its potential therapeutic benefits. It serves as a precursor in the synthesis of other biologically active compounds, which can be leveraged in the development of nutritional supplements aimed at improving overall health. The compound's ability to modulate homocysteine levels presents a promising avenue for addressing health issues related to elevated homocysteine, such as heart disease. With its multifaceted applications, DL-Homocystine stands out as a valuable asset for researchers and industry professionals alike.

Synonyms
Acide DL-4,4'-Dithio-bis-2-aminobutanoïque
CAS Number
870-93-9
Molecular Formula
C8H16N2O4S2
Molecular Weight
268.36
MDL Number
MFCD00069587
PubChem ID
10010
Conditions
Conserver à 0-8°C
General Information
Synonyms
Acide DL-4,4'-Dithio-bis-2-aminobutanoïque
CAS Number
870-93-9
Molecular Formula
C8H16N2O4S2
Molecular Weight
268.36
MDL Number
MFCD00069587
PubChem ID
10010
Conditions
Conserver à 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

DL-Homocystine is widely utilized in research focused on:

  • Biomedical Research: It plays a crucial role in studying cardiovascular diseases, as elevated levels of homocysteine are linked to increased risk of heart conditions.
  • Neuroscience: Researchers use it to investigate its effects on neurodegenerative diseases, providing insights into potential therapeutic targets for conditions like Alzheimer's.
  • Genetic Studies: It is important in examining metabolic pathways and genetic disorders related to cysteine metabolism, aiding in the understanding of hereditary conditions.
  • Pharmaceutical Development: The compound is explored for its potential in developing drugs that can modulate homocysteine levels, offering benefits in managing related health issues.
  • Nutrition and Dietary Supplements: It is used in formulating supplements aimed at lowering homocysteine levels, which may support overall cardiovascular health.

Citations