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Catalog Number:
01896
CAS Number:
362-66-3
Stearoyl coenzyme A
Purity:
92-98%
Synonym(s):
n-Octadecanoyl conezyme A
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Product Information

Stearoyl coenzyme A is a vital compound in biochemistry, primarily recognized for its role in fatty acid metabolism and biosynthesis. This thioester derivative of coenzyme A plays a crucial role in the synthesis of complex lipids and fatty acids, making it indispensable in various biochemical pathways. Its unique structure allows it to participate in the formation of acyl-CoA derivatives, which are essential for energy production and the synthesis of membrane lipids. Researchers and industry professionals utilize Stearoyl coenzyme A in studies related to metabolic disorders, lipid metabolism, and the development of pharmaceuticals targeting lipid-related diseases.

In addition to its metabolic significance, Stearoyl coenzyme A is also employed in the formulation of cosmetic products due to its emollient properties, enhancing skin hydration and texture. Its application in the food industry as a flavoring agent further underscores its versatility. With its multifaceted roles across various sectors, Stearoyl coenzyme A stands out as a compound with significant potential for research and industrial applications, offering benefits that extend from basic science to practical consumer products.

Synonyms
n-Octadecanoyl conezyme A
CAS Number
362-66-3
Purity
92-98%
Molecular Formula
C39H70N7O17P3S
Molecular Weight
1034.0
MDL Number
MFCD00079568
PubChem ID
1106
Conditions
Store at 0-8°C
General Information
Synonyms
n-Octadecanoyl conezyme A
CAS Number
362-66-3
Purity
92-98%
Molecular Formula
C39H70N7O17P3S
Molecular Weight
1034.0
MDL Number
MFCD00079568
PubChem ID
1106
Conditions
Store at 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Stearoyl coenzyme A is widely utilized in research focused on:

  • Fatty Acid Metabolism Studies: This compound is crucial for understanding the metabolic pathways of fatty acids, aiding researchers in exploring energy production and storage in cells.
  • Biochemical Research: It serves as a substrate in various enzymatic reactions, helping scientists investigate enzyme functions and interactions in metabolic processes.
  • Pharmaceutical Development: Used in drug formulation, it assists in the design of lipid-based drug delivery systems, enhancing the bioavailability of hydrophobic drugs.
  • Cell Culture Applications: Employed in cell culture media to support the growth of specific cell types, particularly in studies related to cancer and metabolic diseases.
  • Cosmetic Industry: Its properties make it valuable in formulating skin care products, providing moisturizing benefits and improving product stability.

Citations