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COO/COA

OCY707
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Cyanine7 DBCO
suitable for HPLC, ≥95%
Synonym(s): Cy7-DBCO
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Select a Size
Pack Size SKU Availability Price Quantity
1mg OCY707-1mg In stock $112.00
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5mg OCY707-5mg In stock $234.00
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10mg OCY707-10mg In stock $349.00
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25mg OCY707-25mg In stock $459.00
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50mg OCY707-50mg In stock $805.00
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Product Information
General Properties
Other Properties
Description
Safety Information
Product Information
CAS Number
Linear Formula

C52H55ClN4O2

Molecular weight 803.47
Beilstein
EC Number

MDL Number

PubChem CID
General Properties
Purity 95%
Appearance Dark blue powder
Solubility Freely soluble in methanol, chloroform, DMSO, and DMF; poorly soluble in water.
Purity Testing Method HPLC
Structural Identification Method NMR/MS
Storage Conditions −20 °C, keep in dark place.
Other Properties
DESCRIPTION

Cyanine7 DBCO is a copper-free click chemistry reagent (ex/em 750/773 nm) for strain-promoted azide-alkyne cycloaddition (SPAAC). This non-sulfonated near-infrared dye features a dibenzocyclooctyne (DBCO) group that enables rapid, catalyst-free conjugation to azides under physiological conditions, making it ideal for sensitive live-cell and in vivo imaging applications.
For enhanced water solubility, use sulfo-Cyanine7 DBCO. Store under argon at -80°C protected from light.

SAFETY INFORMATION
  • Symbol GHS

  • Hazard Code

  • Risk Statements

  • Safety Statements

  • RIDADR

  • WGK Germany

  • RTECS

  • F

  • Hazard Class

  • Packing Group

  • HS Code

  • Toxicity

  • Autoignition Temperature

RELATED PRODUCTS
REFERENCES
1. Alberg, I.; Kramer, S.; Schinnerer, M.; Hu, Q.; Seidl, C.; Leps, C.; Drude, N.; M?ckel, D.; Rijcken, C.; Lammers, T.; Diken, M.; Maskos, M.; Morsbach, S.; Landfester, K.; Tenzer, S.; Barz, M.; Zentel, R. Polymeric Nanoparticles with Neglectable Protein Corona. Small, 2020, 16(18), 1907574. doi: 10.1002/smll.201907574
2. Islam, M.R.; Nguy, C.; Pandit, S.; Lyon, L.A. Design and Synthesis of Core–Shell Microgels with One‐Step Clickable Crosslinked Cores and Ultralow Crosslinked Shells. Macromolecular Chemistry and Physics, 2020, 221(19), 2000156. doi: 10.1002/macp.202000156
3. J?ger, E.; Humajová, J.; D?len, Y.; Ku?ka, J.; J?ger, A.; Konefa?, R.; Pankrác, J.; Pavlova, E.; Heizer, T.; ?efc, L.; Hruby, M.; Figdor, C. G.; Verdoes, M. Enhanced Antitumor Efficacy through an “AND Gate” Reactive Oxygen-Species-Dependent PH-Responsive Nanomedicine Approach. Advanced Healthcare Materials, 2021, 10(13), 2100304. doi: 10.1002/adhm.202100304
4. Park, J. S.; Lim, Y. G.; Park, K. Novel Bidentate β-Glutamic Acid-Based Bone-Targeting Agents for in Vivo Bone Imaging. Journal of Industrial and Engineering Chemistry, 2022, 110, 471–478. doi: 10.1016/j.jiec.2022.03.021
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