3-(3-Methyl-3H-diazirin-3-yl)propanoic acid

97%

  • Product Code: 78677
  CAS:    25055-86-1
Molecular Weight: 128.13 g./mol Molecular Formula: C₅H₈N₂O₂
EC Number: MDL Number: MFCD19228230
Melting Point: Boiling Point: 233.0±32.0°C at 760 mmHg
Density: Storage Condition: -20°C
Product Description: 3-(3-Methyl-3H-diazirin-3-yl)propanoic acid is primarily used in biochemical research as a photoactivatable crosslinking agent. Its diazirine group becomes highly reactive upon exposure to ultraviolet (UV) light, enabling it to form covalent bonds with nearby molecules. This property is particularly valuable in studying protein-protein interactions, ligand-receptor binding, and other molecular interactions. Researchers often incorporate it into probes or labels to capture transient or weak interactions that are difficult to detect using traditional methods. Additionally, it is utilized in the development of affinity-based probes for identifying and characterizing unknown binding partners in complex biological systems. Its application extends to mapping protein networks and understanding cellular processes at the molecular level.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.100 10-20 days ฿5,895.00
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0.250 10-20 days ฿12,744.00
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3-(3-Methyl-3H-diazirin-3-yl)propanoic acid
3-(3-Methyl-3H-diazirin-3-yl)propanoic acid is primarily used in biochemical research as a photoactivatable crosslinking agent. Its diazirine group becomes highly reactive upon exposure to ultraviolet (UV) light, enabling it to form covalent bonds with nearby molecules. This property is particularly valuable in studying protein-protein interactions, ligand-receptor binding, and other molecular interactions. Researchers often incorporate it into probes or labels to capture transient or weak interactions that are difficult to detect using traditional methods. Additionally, it is utilized in the development of affinity-based probes for identifying and characterizing unknown binding partners in complex biological systems. Its application extends to mapping protein networks and understanding cellular processes at the molecular level.
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