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Catalog Number:
06789
Na-Fmoc-Ng-trityl-L-asparagine-2-chlorotrityl resin (0.3 - 0.9 meq/g, 200 - 400 mesh)
Synonym(s):
Fmoc-L-Asn(Trt)-2-chlorotrityl resin
Documents
$37.96 /1G
Pack Size Availability Price
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Product Information

Na-Fmoc-Ng-trityl-L-asparagine-2-chlorotrityl resin is a highly specialized resin used in peptide synthesis, particularly in solid-phase peptide synthesis (SPPS). This compound features a unique combination of protective groups that facilitate the selective coupling of amino acids, making it an essential tool for researchers in the fields of biochemistry and molecular biology. Its trityl and Fmoc protective groups provide excellent stability during synthesis while allowing for easy deprotection, ensuring high yields and purity of the final peptide product.

This resin is particularly advantageous for synthesizing complex peptides and proteins, where precision and efficiency are paramount. Its application extends to drug development, where the synthesis of peptide-based therapeutics is increasingly important. Researchers appreciate the resin's compatibility with various coupling reagents and its ability to support the synthesis of challenging sequences, making it a versatile choice for laboratories focused on peptide research and development.

Synonyms
Fmoc-L-Asn(Trt)-2-chlorotrityl resin
Molecular Weight
0
MDL Number
MFCD03792260
Substitution
0.3 - 0.9 meq/g
Mesh Size
200 - 400 mesh
Conditions
Store at 0-8°C
%DVB
1% DVB
General Information
Synonyms
Fmoc-L-Asn(Trt)-2-chlorotrityl resin
Molecular Weight
0
MDL Number
MFCD03792260
Substitution
0.3 - 0.9 meq/g
Mesh Size
200 - 400 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-Fmoc-Ng-trityl-L-asparagine-2-chlorotrityl resin is widely utilized in research focused on

  • Peptide Synthesis: This resin is essential in solid-phase peptide synthesis, allowing researchers to efficiently build peptides with specific sequences, crucial for drug development and therapeutic applications.
  • Bioconjugation: It serves as a versatile platform for attaching peptides to other molecules, enhancing the functionality of biopharmaceuticals and improving targeted drug delivery systems.
  • Protein Engineering: The resin is used in the modification of proteins, enabling the creation of novel protein variants for research in enzyme activity and protein interactions.
  • Research in Cancer Therapeutics: By facilitating the synthesis of peptide-based drugs, it plays a role in developing targeted therapies for cancer treatment, addressing the need for more effective and less toxic options.
  • Custom Peptide Libraries: This resin allows for the generation of diverse peptide libraries, which are invaluable in screening for new drug candidates and understanding biological processes.

Citations