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Catalog Number:
37485
CAS Number:
908007-17-0
N-(3-Azidopropyl)biotinamide
Purity:
≥ 95% (HPLC)
Documents
$612.72 /100MG
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Product Information

N-(3-Azidopropyl)biotinamide is a versatile compound that plays a crucial role in bioconjugation and labeling applications, particularly in the fields of molecular biology and biochemistry. This compound is recognized for its unique azide functional group, which allows for efficient click chemistry reactions, making it an ideal choice for researchers looking to create stable conjugates with biomolecules such as proteins, peptides, and nucleic acids. Its biotin moiety enhances the binding affinity to avidin or streptavidin, facilitating the detection and purification of target molecules in various assays.

In practical applications, N-(3-Azidopropyl)biotinamide has been utilized in the development of biosensors, drug delivery systems, and imaging agents. Its ability to form covalent bonds with a wide range of substrates enables the creation of innovative tools for studying cellular processes and disease mechanisms. Additionally, the compound's stability and compatibility with biological systems make it a valuable asset for researchers aiming to explore complex biological interactions or develop novel therapeutic strategies.

CAS Number
908007-17-0
Purity
≥ 95% (HPLC)
Molecular Formula
C13H22N6O2S
Molecular Weight
326.42
MDL Number
MFCD20134144
PubChem ID
72277714
Melting Point
166 - 170 °C
Appearance
White to off-white powder
Conditions
Store at RT
General Information
CAS Number
908007-17-0
Purity
≥ 95% (HPLC)
Molecular Formula
C13H22N6O2S
Molecular Weight
326.42
MDL Number
MFCD20134144
PubChem ID
72277714
Melting Point
166 - 170 °C
Appearance
White to off-white powder
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

N-(3-Azidopropyl)biotinamide is widely utilized in research focused on:

  • Bioconjugation: This compound is frequently used to attach biomolecules to surfaces or other molecules, enhancing the study of protein interactions and cellular processes.
  • Drug Delivery Systems: Its azide group allows for click chemistry applications, making it a valuable component in developing targeted drug delivery systems that improve therapeutic efficacy.
  • Diagnostics: The compound plays a crucial role in the development of diagnostic tools, particularly in assays that require biotin-streptavidin interactions, which are essential for detecting specific biomolecules.
  • Protein Labeling: Researchers use this chemical for labeling proteins with biotin, facilitating the purification and detection of proteins in various biological assays.
  • Gene Editing: It can be employed in gene editing technologies, where biotinylated oligonucleotides are used to enhance the specificity and efficiency of CRISPR systems.

Citations