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CAS NO: | 843666-40-0 | MF: | C22H42O4 |
---|---|---|---|
MW: | 370.57 | Appearance: | White Powder |
HPLC: | 99+ | EINECS: | - |
Highlight: | HPLC 99+ Semaglutide intermediate,CAS NO 843666-40-0 Semaglutide Intermediate |
Product Description
Semaglutide intermediate OCTADECANEDIOIC ACID MONO-TERT-BUTYL ESTER Intermediates of APIs CAS NO 843666-40-0 HPLC 99+
Name: OCTADECANEDIOIC ACID MONO-TERT-BUTYL ESTER
CAS NO: 843666-40-0
M.W: 174.2
Appearance: White Powder
HPLC: 99+
Synonyms:tert-butyl17-carboxyheptadecanoate;mono-t-Butylstearate;Octadecanedioicacid1-tert-butylester;OCTADECANEDIOICACIDMONO-TERT-BUTYLESTER;18-(tert-Butoxy)-18-oxooctadecanoicacid;18-(tert-Butoxy)-18-oxostearicacid,tert-Butyl17-carboxyheptadecanoate;18-(tert-Butoxy);-18-oxooctadecanoicacid
Application
Pharmaceutical Intermediates:Octadecanedioic acid monotert-butyl ester has the potential to serve as an intermediate in the synthesis of Semaglutide or its analogues. In drug development, long-chain fatty acids and their derivatives are frequently employed to construct molecules with specific biological activities. Semaglutide, as a long-acting GLP-1 receptor agonist, may contain structural fragments or functional groups similar to those found in octadecanedioic acid monotert-butyl ester within its molecular structure.
Drug Metabolism and Kinetics Research:Long-chain fatty acid esters such as octadecanedioic acid monotert-butyl ester can potentially influence drug metabolism and kinetics. In the study of GLP-1 receptor agonists like Semaglutide, understanding the metabolic pathways and kinetic characteristics of the drug within the body is crucial for optimizing drug design, enhancing efficacy, and minimizing side effects.
Materials Science and Biomedical Engineering:Beyond its application in pharmaceutical chemistry, octadecanedioic acid monotert-butyl ester may also find use in the fields of materials science and biomedical engineering. For instance, it could serve as a plasticizer, lubricant, or raw material for chemical synthesis, contributing to the development of biomedical materials or devices with specific properties.
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