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Catalog Number:
35161
Dde biotin azide
Synonym(s):
1-(4,4-Dimethyl-2,6-dioxocyclohex-1-ylidene)-biotin azide
Documents
$166.30 /1MG
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Product Information

Dde biotin azide is a versatile chemical compound widely utilized in bioconjugation and labeling applications. This compound, a derivative of biotin, features an azide functional group that allows for efficient click chemistry reactions, making it an essential tool for researchers in the fields of biochemistry and molecular biology. Its unique structure enables the selective attachment to biomolecules, facilitating the study of protein interactions, cellular processes, and the development of targeted therapeutics.

Researchers can leverage Dde biotin azide in various applications, including the synthesis of biotinylated probes for imaging and detection, as well as in the preparation of bioconjugates for drug delivery systems. Its compatibility with a range of biomolecules enhances its utility in both in vitro and in vivo studies. The ability to easily incorporate Dde biotin azide into complex biological systems positions it as a valuable asset for advancing research in proteomics and drug development, providing a reliable method for tracking and analyzing biomolecular interactions.

Synonyms
1-(4,4-Dimethyl-2,6-dioxocyclohex-1-ylidene)-biotin azide
Molecular Formula
C32H53N7O8S
Molecular Weight
695.37
Appearance
Glass-like solid
Conditions
Store at -10 °C, desiccate and shipped at ambient temperature
General Information
Synonyms
1-(4,4-Dimethyl-2,6-dioxocyclohex-1-ylidene)-biotin azide
Molecular Formula
C32H53N7O8S
Molecular Weight
695.37
Appearance
Glass-like solid
Conditions
Store at -10 °C, desiccate and shipped at ambient temperature
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Dde biotin azide is widely utilized in research focused on:

  • Bioconjugation: This compound is essential for attaching biotin to various biomolecules, facilitating the study of protein interactions and cellular processes.
  • Targeted Drug Delivery: Researchers use Dde biotin azide to create drug delivery systems that can specifically target cells expressing biotin receptors, enhancing therapeutic efficacy.
  • Imaging Techniques: It plays a critical role in imaging applications, where biotinylated probes can be used for enhanced visualization of cellular components in microscopy.
  • Protein Purification: The compound aids in the purification of proteins through affinity chromatography, allowing for the isolation of specific proteins from complex mixtures.
  • Development of Biosensors: Dde biotin azide is utilized in the design of biosensors that detect biotin-binding proteins, which can be pivotal in diagnostics and environmental monitoring.

Citations