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Catalog Number:
04042
Nα-Boc-Nγ-xanthyl-L-asparagine Merrifield resin (0.25 - 0.7 meq/g, 100 - 200 mesh)
Synonym(s):
Boc-L-Asn(Xan)-Merrifield resin
Documents
$60.39 /5G
Pack Size Availability Price
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Product Information

Na-Boc-Ng-xanthyl-L-asparagine Merrifield resin is a specialized chemical compound widely utilized in peptide synthesis and drug development. This resin features a Boc (tert-butyloxycarbonyl) protecting group, which is crucial for the selective protection of amino groups during the synthesis of peptides. With a functional capacity of 0.25 - 0.7 meq/g and a particle size of 100 - 200 mesh, this resin offers excellent compatibility with various coupling reagents, making it an ideal choice for researchers and industry professionals engaged in the synthesis of complex peptides.

The unique xanthyl group enhances the solubility and stability of the resin, facilitating smoother reactions and higher yields in peptide synthesis. Its application extends to the pharmaceutical industry, where it plays a vital role in developing therapeutic peptides and proteins. Researchers benefit from its ease of use and efficiency, allowing for streamlined workflows in laboratory settings. By choosing Na-Boc-Ng-xanthyl-L-asparagine Merrifield resin, professionals can achieve superior results in their peptide synthesis projects, ensuring high purity and functionality in their final products.

Synonyms
Boc-L-Asn(Xan)-Merrifield resin
MDL Number
MFCD00801429
Substitution
0.25 - 0.7 meq/g
Mesh Size
100 - 200 mesh
Conditions
Store at 0-8°C
%DVB
1% DVB
General Information
Synonyms
Boc-L-Asn(Xan)-Merrifield resin
MDL Number
MFCD00801429
Substitution
0.25 - 0.7 meq/g
Mesh Size
100 - 200 mesh
Conditions
Store at 0-8°C
%DVB
1% DVB
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Na-Boc-Ng-xanthyl-L-asparagine Merrifield resin is widely utilized in research focused on:

  • Peptide Synthesis: This resin serves as a solid support for synthesizing peptides through the Merrifield method, allowing for the efficient assembly of amino acids into complex structures.
  • Drug Development: Researchers leverage this resin to create peptide-based drugs, facilitating the discovery of new therapeutic agents for various diseases.
  • Bioconjugation: It is used in bioconjugation processes, where peptides are attached to other biomolecules, enhancing the functionality of drugs and diagnostics.
  • Protein Engineering: The resin aids in the design and production of modified proteins, which can be crucial for developing new biotechnological applications.
  • Research in Cancer Therapeutics: Its application in synthesizing specific peptides allows scientists to explore targeted cancer therapies, potentially leading to more effective treatments.

Citations