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H-Hyp-OMe·HCl CAS:40216-83-9

H-Hyp-OMe·HCl is a derivative of hydroxyproline featuring a methyl ester group and hydrochloride salt, commonly used in peptide synthesis and biochemical research. This compound offers unique properties for applications in drug development, proteomics, and the study of protein structure and function. With its tailored structure, H-Hyp-OMe·HCl provides researchers with a versatile tool for creating customized peptides and investigating complex biological processes.


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Application and Effect:

H-Hyp-OMe·HCl serves as a vital building block in peptide synthesis, playing a pivotal role in constructing peptides with specific structural and functional characteristics. The presence of the methyl ester group influences the chemical reactivity and hydrophobic interactions of the peptide, making it valuable for designing peptides with enhanced membrane permeability or specific targeting abilities. In drug development, this compound can be utilized to create peptide-based drugs with improved stability and bioavailability, potentially leading to enhanced therapeutic efficacy, especially in its HCl form. Furthermore, in proteomics and biochemical research, H-Hyp-OMe·HCl finds applications in studying collagen structure, investigating post-translational modifications, and exploring protein folding dynamics in the context of connective tissue biology. Its unique properties enable researchers to probe the intricacies of cellular processes and disease mechanisms related to connective tissue disorders, contributing to advancements in understanding health and pathology. The compound's versatility and compatibility with various experimental conditions make it an essential component for unraveling the complexities of biological systems and developing targeted interventions for various medical conditions. In summary, H-Hyp-OMe·HCl represents a valuable tool for researchers in peptide synthesis, drug development, and biochemical studies, offering the capability to tailor peptides with specific properties and unraveling the fundamental mechanisms of biological processes, thereby contributing to advancements in medicine and biotechnology, particularly in the context of connective tissue-related research and therapeutics.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C6H12ClNO3
Assay 99%
Appearance white powder
CAS No.  40216-83-9
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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