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Catalog Number:
33301
Résine 9-Fmoc-aminoxanthène-3-yloxy-polystyrène (0,2 - 0,6 mmol/g, 200 - 400 mesh)
Synonym(s):
Résine Sieber
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$79.22 /1G
Taille
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Informations sur le produit

9-Fmoc-aminoxanthen-3-yloxy-polystyrene resin is a highly versatile and functional resin widely utilized in the field of organic synthesis and peptide chemistry. This resin features a unique Fmoc (9-fluorenylmethyloxycarbonyl) protective group, which allows for selective deprotection during peptide synthesis, making it an essential tool for researchers in the development of complex peptides and biomolecules. With a loading capacity of 0.2 - 0.6 mmol/g and a mesh size of 200 - 400, this resin offers optimal surface area for efficient reactions, ensuring high yields and purity in synthetic processes.

The practical applications of this resin extend to drug discovery and development, where it serves as a solid support for the synthesis of peptide libraries. Its compatibility with various coupling reagents and solvents enhances its usability in diverse laboratory settings. Researchers can leverage the unique properties of 9-Fmoc-aminoxanthen-3-yloxy-polystyrene resin to streamline their workflows, reduce reaction times, and improve overall efficiency in peptide synthesis, making it an invaluable asset in both academic and industrial laboratories.

Taille de la maille
200 - 400 mailles
Informations générales
Taille de la maille
200 - 400 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

9-Fmoc-aminoxanthen-3-yloxy-polystyrene resin is widely utilized in research focused on:

  • Peptide Synthesis: This resin serves as a solid support in the synthesis of peptides through the Fmoc (Fluorenylmethyloxycarbonyl) protection strategy, allowing for efficient and high-yield production of complex peptides.
  • Drug Development: In pharmaceutical research, it is used to create peptide-based drugs, enabling the design of novel therapeutics with improved efficacy and specificity.
  • Bioconjugation: The resin facilitates the attachment of biomolecules, such as antibodies or enzymes, to peptides, enhancing their functionality for targeted drug delivery systems.
  • Material Science: It is applied in the development of advanced materials, including sensors and catalysts, due to its unique chemical properties and structural versatility.
  • Research in Cancer Therapy: The compound is explored for its potential in developing targeted therapies for cancer, leveraging its ability to create specific peptide sequences that can interact with cancer cells.

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