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biotin azide

" in TargetMol Product Catalog
  • Inhibitors & Agonists
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Fluorescein Biotin Azide
TYD-01691
Fluorescein Biotin Azide is a conjugate of fluorescein and biotin, utilized as a detection and labeling tool in click chemistry.
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Biotin-azide
N-(3-Azidopropyl)biotinamide, Biotin-azide
T41046908007-17-0
Biotin-azide (N-(3-Azidopropyl)biotinamide) is used for preparing various biotin affixes and identifying proteins.
  • $38
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Biotin-PEG10-azide
Biotin-PEG10-N3
TCL-021331628165-01-4
Biotin-PEG10-azide (Biotin-PEG10-N3) is a PEG derivative that integrates biotin, 10 PEG units, and an azide group. Biotin can form a stable, non-covalent bond with streptavidin. The azide group allows for copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing alkyne groups and enables strain-promoted azide-alkyne cycloaddition (SPAAC) with DBCO or BCN group-containing molecules.
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10-14 weeks
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DBCO-PEG-Biotin (MW 2000)
TCL-01431
DBCO-PEG-Biotin (MW 2000) is a clickable biotinylation compound that enables copper-free click chemistry with azide molecules, resulting in the formation of stable triazole bonds.
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DBCO-PEG-Biotin (MW 20000)
TCL-01465
DBCO-PEG-Biotin (MW 20000) is a click chemistry biotin conjugate that reacts with azide molecules through copper-free click chemistry, resulting in the formation of stable triazole bonds.
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DBCO-PEG-Biotin (MW 1000)
TCL-01527
DBCO-PEG-Biotin (MW 1000) is a click chemistry biotinylated compound that can react with azide molecules through copper-free click chemistry to form a stable triazole linkage.
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DBCO-PEG-Biotin (MW 10000)
TCL-01529
DBCO-PEG-Biotin (MW 10000) is a click chemistry biotinylated compound that can react with azide molecules through copper-free click chemistry to form stable triazole bonds.
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DBCO-PEG-Biotin (MW 40000)
TCL-01562
DBCO-PEG-Biotin (MW 40000) is a click chemistry biotin derivative that can undergo copper-free click chemistry with azide molecules to form stable triazole bonds.
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DBCO-PEG-Biotin (MW 5000)
TCL-01566
DBCO-PEG-Biotin (MW 5000) is a click chemistry biotinylation reagent that can perform copper-free cycloaddition with azide-containing molecules, resulting in a stable triazole bond.
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DBCO-PEG-Biotin (MW 3400)
TCL-01646
DBCO-PEG-Biotin (MW 3400) is a clickable biotin compound that can undergo copper-free click chemistry with azide molecules, resulting in the formation of a stable triazole linkage.
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Azide-PEG2-Desthiobiotin
TCL-01915
Azide-PEG2-Desthiobiotin is a PEG derivative composed of desthiobiotin, two PEG units, and an azide group (azide). Biotin forms a stable non-covalent bond with streptavidin (Streptavidin). The azide group can participate in copper-catalyzed azide-alkyne cycloaddition reactions (CuAAc) with alkyne-containing molecules. Additionally, it can engage in strain-promoted azide-alkyne cycloaddition reactions (SPAAC) with molecules containing DBCO or BCN groups.
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Endo-BCN-PEG2-Biotin
TCL-020021393600-24-2
Endo-BCN-PEG2-Biotin is a PEG linker containing a BCN group and a terminal carboxylic acid. The BCN group shows high reactivity with azide-labeled molecules. Additionally, amino groups react effectively with carboxylic acids, activated NHS esters, and carbonyl compounds (ketones, aldehydes).
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10-14 weeks
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Azide-PEG4-Desthiobiotin
TCL-020383081529-39-4
Azide-PEG4-Desthiobiotin is a PEG derivative composed of desthiobiotin, four PEG units, and an azide group (azide). Biotin forms a stable non-covalent complex with Streptavidin. The azide group can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing alkyne groups. Additionally, it can participate in strain-promoted azide-alkyne cycloaddition (SPAAC) with molecules that have DBCO or BCN groups.
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10-14 weeks
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Azide-PEG1-Desthiobiotin
TCL-02065
Azide-PEG1-Desthiobiotin is a PEG derivative comprising desthiobiotin, a single PEG unit, and an azide group (azide). Biotin within this compound can form a stable non-covalent bond with streptavidin (Streptavidin). The azide group facilitates copper-catalyzed azide-alkyne cycloaddition reactions (CuAAc) with molecules containing alkyne groups. Additionally, it can undergo strain-promoted azide-alkyne cycloaddition reactions (SPAAC) with molecules that have DBCO or BCN groups.
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Biotin-C1-PEG3-C3-amido-C5-Gly-Arg-Gly-N3 TFA
TYD-01457
Biotin-C1-PEG3-C3-amido-C5-Gly-Arg-Gly-N3 (TFA) is a click chemistry reagent utilized for identifying modification sites in N-myristoylation and GPI-anchored proteins of P. falciparum. This compound features an azide group, enabling copper-catalyzed azide-alkyne cycloaddition (CuAAC) with molecules containing alkyne groups. Additionally, it can participate in strain-promoted azide-alkyne cycloaddition (SPAAC) with molecules possessing DBCO or BCN groups.
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