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Catalog Number:
02753
Résine Merrifield Boc- S -acétamidométhyl-L-cystéine (0,25 - 0,7 meq/g, 100 - 200 mesh)
Synonym(s):
Résine Boc-L-Cys(Acm)-Merrifield
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$58.39 /1G
Taille
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Informations sur le produit

Boc-S-acetamidomethyl-L-cysteine Merrifield is a versatile amino acid derivative widely utilized in peptide synthesis and bioconjugation applications. This compound features a protective Boc (tert-butyloxycarbonyl) group, which enhances its stability and facilitates selective reactions, making it an ideal choice for researchers in the fields of medicinal chemistry and biotechnology. Its unique structure allows for the incorporation of sulfur-containing amino acids into peptides, which is crucial for developing novel therapeutics and studying protein interactions.

In practical applications, Boc-S-acetamidomethyl-L-cysteine Merrifield is particularly valuable in the synthesis of cyclic peptides and in the modification of biomolecules for drug delivery systems. Its ability to form disulfide bonds can be exploited to stabilize peptide structures, thereby improving the efficacy of peptide-based drugs. Researchers appreciate its ease of use and compatibility with various coupling reagents, making it a preferred choice for those looking to innovate in peptide design and functionalization.

Taille de la maille
100 - 200 mailles
Informations générales
Taille de la maille
100 - 200 mailles
Propriétés
Informations complémentaires sur la propriété à venir prochainement !
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Sécurité et réglementation
Matières dangereuses
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Antibiotique
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Réglementé par la DEA
Non
Avertissements 
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Applications

Boc-S-acetamidomethyl-L-cysteine Merrifield is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a protecting group in the synthesis of peptides, allowing for the selective modification of amino acids without interfering with other functional groups.
  • Drug Development: It is used in the design of novel therapeutic agents, particularly in the development of cysteine-containing compounds that can target specific biological pathways.
  • Bioconjugation: Researchers employ this chemical in bioconjugation techniques to attach biomolecules to surfaces or other molecules, enhancing the functionality of drugs and diagnostics.
  • Protein Engineering: It plays a role in the engineering of proteins by enabling the introduction of specific modifications that can alter protein activity or stability, which is crucial in biotechnology.
  • Analytical Chemistry: The compound is utilized in analytical methods to study the interactions of cysteine residues in proteins, aiding in the understanding of protein structure and function.

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