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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
- +
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
PubChem SID
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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