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Catalog Number:
02755
Résine Merrifield Boc- S -4-méthylbenzyl-L-cystéine (0,25 - 1,0 meq/g, 100 - 200 mesh)
Synonym(s):
Résine Boc-L-Cys(pMeBzl)-Merrifield
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$22.03 /1G
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Informations sur le produit

Boc-S-4-methylbenzyl-L-cysteine Merrifield is a versatile amino acid derivative widely utilized in peptide synthesis and drug development. This compound features a protective Boc (tert-butyloxycarbonyl) group, which enhances its stability and facilitates the formation of peptide bonds. Its unique structure, characterized by the 4-methylbenzyl side chain, allows for increased hydrophobic interactions, making it particularly useful in the synthesis of peptides with specific biological activities. Researchers and industry professionals can leverage this compound for the development of targeted therapeutics, especially in oncology and infectious diseases, where precise peptide design is crucial.

In addition to its applications in pharmaceutical research, Boc-S-4-methylbenzyl-L-cysteine Merrifield serves as an essential building block in the creation of complex biomolecules. Its ability to participate in various coupling reactions makes it a valuable tool for chemists aiming to construct novel peptide sequences. The compound's favorable properties, such as high purity and compatibility with standard coupling reagents, further enhance its appeal in both academic and industrial settings. By incorporating this amino acid derivative into their workflows, researchers can streamline their synthesis processes and achieve higher yields in their peptide production.

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-4-methylbenzyl-L-cysteine Merrifield is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a key building block in the synthesis of peptides, enabling researchers to create complex molecules for drug development and biological studies.
  • Drug Discovery: Its unique structure allows for the design of novel therapeutic agents, particularly in the fields of cancer and infectious diseases, where targeted therapies are essential.
  • Bioconjugation: The compound can be used to attach biomolecules to surfaces or other molecules, enhancing the efficacy of diagnostics and therapeutics in medical applications.
  • Research in Protein Engineering: It aids in the modification of proteins to study their functions, stability, and interactions, which is crucial for understanding biological processes.
  • Development of Antioxidants: The compound's properties can be leveraged to create antioxidants that protect cells from oxidative stress, contributing to advancements in health and wellness products.

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