914134
5-(Biotinamido)pentylamine TFA Salt
≥95%
Synonym(s):
N-(5-Aminopentyl)-5-((3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl)pent, Biotin cadaverine TFA, Biotin-DAPe TFA
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Application
5-(Biotinamido)pentylamine TFA Salt is a versatile biotinylated linker that can be incorporated into chemical tools via its terminal amino group. Labeling materials or proteins with biotin provides a means to enrich and capture targets from biological systems.
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Other Notes
Site-selective conversion of azido groups at carbonyl α-positions into oxime groups leading triazide to a triple click conjugation scaffold
Convergent synthesis of trifunctional molecules by three sequential azido-type-selective cycloadditions
Locked by Design: A Conformationally Constrained Transglutaminase Tag Enables Efficient Site-Specific Conjugation
Synthesis of Novel Phosphonic-Type Activity-Based Probes for Neutrophil Serine Proteases and Their Application in Spleen Lysates of Different Organisms
Convergent synthesis of trifunctional molecules by three sequential azido-type-selective cycloadditions
Locked by Design: A Conformationally Constrained Transglutaminase Tag Enables Efficient Site-Specific Conjugation
Synthesis of Novel Phosphonic-Type Activity-Based Probes for Neutrophil Serine Proteases and Their Application in Spleen Lysates of Different Organisms
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Product No.
Description
Pricing
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Certificates of Analysis (COA)
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Chemical communications (Cambridge, England), 54(30), 3705-3708 (2018-03-13)
A facile strategy for the synthesis of trifunctional molecules involving three sequential selective triazole-forming reactions is proposed. This method exploits three kinds of mechanistically different azido-type-selective cycloadditions. Three different azidophiles could be efficiently connected to a triazido platform molecule with
Chembiochem : a European journal of chemical biology, 15(17), 2605-2612 (2014-09-23)
Neutrophils are a type of granulocyte important in the "first line of defense" of the innate immune system. Upon activation, they facilitate the destruction of invading microorganisms by the production of superoxide radicals, as well as the release of the
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