N-(m-PEG9)-N'-(propargyl-PEG8)-Cy5

  • Product Code: 106358
  CAS:    2107273-10-7
Molecular Weight: 1191.92 g./mol Molecular Formula: C₆₃H₉₉ClN₂O₁₇
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: 2-8°C, dry, sealed
Product Description: This chemical is widely used in bioconjugation and labeling applications due to its dual PEGylated structure and Cy5 fluorescent dye. The m-PEG9 segment enhances solubility and reduces immunogenicity, making it suitable for in vivo studies, while the propargyl-PEG8 group allows for click chemistry reactions, enabling efficient attachment to biomolecules like proteins, peptides, or antibodies. The Cy5 fluorophore provides strong near-infrared fluorescence, ideal for imaging, tracking, and detection in biological systems. It is commonly employed in fluorescence microscopy, flow cytometry, and in vivo imaging to study cellular processes, protein interactions, and drug delivery mechanisms. Its design ensures minimal interference with biological activity while offering high sensitivity and specificity in various research and diagnostic applications.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.100 10-20 days ฿45,000.00
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N-(m-PEG9)-N'-(propargyl-PEG8)-Cy5
This chemical is widely used in bioconjugation and labeling applications due to its dual PEGylated structure and Cy5 fluorescent dye. The m-PEG9 segment enhances solubility and reduces immunogenicity, making it suitable for in vivo studies, while the propargyl-PEG8 group allows for click chemistry reactions, enabling efficient attachment to biomolecules like proteins, peptides, or antibodies. The Cy5 fluorophore provides strong near-infrared fluorescence, ideal for imaging, tracking, and detection in biological systems. It is commonly employed in fluorescence microscopy, flow cytometry, and in vivo imaging to study cellular processes, protein interactions, and drug delivery mechanisms. Its design ensures minimal interference with biological activity while offering high sensitivity and specificity in various research and diagnostic applications.
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