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Key Documents

SDS

COO/COA

OCY713
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Water-soluble Cyanine7 maleimide
suitable for HPLC, ≥95%
Synonym(s): Cy7-Maleimide
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Pack Size SKU Availability Price Quantity
1mg OCY713-1mg In stock $171.00
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5mg OCY713-5mg In stock $356.00
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10mg OCY713-10mg In stock $592.00
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25mg OCY713-25mg In stock $1150.00
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50mg OCY713-50mg In stock $1731.00
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Product Information
General Properties
Other Properties
Description
Safety Information
Product Information
CAS Number
Linear Formula

C40H47ClN4O3

Molecular weight 667.28
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
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. Schwarz, B.; Madden, P.; Avera, J.; Gordon, B.; Larson, K.; Miettinen, H.; Uchida, M.; LaFrance, B.; Basu, G.; Rynda-Apple, A.; Douglas, T. Symmetry Controlled, Genetic Presentation of Bio-Active Proteins on the P22 Virus-Like Particle Using an External Decoration Protein. ACS Nano, 2015, 9(9), 9134–9147. doi: 10.1021/acsnano.5b03360
2. Wang, T.; Tang, Y.; He, X.; Yan, J.; Wang, C.; Feng, X. Self-Assembled Raspberry-Like Core/Satellite Nanoparticles for Anti-Inflammatory Protein Delivery. ACS Applied Materials & Interfaces, 2017, 9(8), 6902–6907. doi: 10.1021/acsami.6b16277
3. Tondera, C.; Wieduwild, R.; R?der, E.; Werner, C.; Zhang, Y.; Pietzsch, J. In Vivo Examination of an Injectable Hydrogel System Crosslinked by Peptide-Oligosaccharide Interaction in Immunocompetent Nude Mice. In Vivo Examination of an Injectable Hydrogel System Crosslinked by Peptide-Oligosaccharide Interaction in Immunocompetent Nude Mice, 2017, 27(15), 1605189. doi: 10.1002/adfm.201605189
4. Matsuoka, D.; Watanabe, H.; Shimizu, Y.; Kimura, H.; Yagi, Y.; Kawai, R.; Ono, M.; Saji, H. Structure–activity relationships of succinimidyl-Cys-C (O)-Glu derivatives with different near-infrared fluorophores as optical imaging probes for prostate-specific membrane antigen. Bioorganic & Medicinal Chemistry, 2018, 26(9), 2291–2301. doi: 10.1016/j.bmc.2018.03.015
5. Melgar-Asensio, I.; Kandela, I.; Aird, F.; Darjatmoko, S.R.; de Los Rios, C.; Sorenson, C.M.; Albert, D.M.; Sheibani, N.; Henkin, J. Extended Intravitreal Rabbit Eye Residence of Nanoparticles Conjugated With Cationic Arginine Peptides for Intraocular Drug Delivery: In Vivo Imaging. Investigative Ophthalmology & Visual Science, 2018, 59(10), 4071–4081. doi: 10.1167/iovs.18-24087
6. Liu, Y.; Scrivano, L.; Peterson, J.D.; Fens, M.H.A.M.; Beltrán Hernández, I.; Mesquita, B.; Sastre Torano, J.; Hennink, W.E.; van Nostrum, C.F.; Oliveira, S. EGFR targeted nanobody functionalized polymeric micelles loaded with mTHPC for selective photodynamic therapy. Molecular Pharmaceutics, 2020, 17(4), 1276–1292. doi: 10.1021/acs.molpharmaceut.9b01280
7. Liu, Y.; Fens, M.H.A.M.; Lou, B.; van Kronenburg, N.C.H.; Maas-Bakker, R.F.M.; Kok, R.J.; Oliveira, S.; Hennink, W.E.; van Nostrum, C.F. π-π-Stacked Poly(ε-caprolactone)-b-poly(ethylene glycol) Micelles Loaded with a Photosensitizer for Photodynamic Therapy. Pharmaceutics, 2020, 12(4), 338. doi: 10.3390/pharmaceutics12040338
8. Cursi, L.; Vercellino, S.; M. McCafferty, M.; Sheridan, E.; Petseva, V.; Adumeau, L.; A. Dawson, K. Multifunctional Superparamagnetic Nanoparticles with a Fluorescent Silica Shell for the in Vitro Study of Bio-Nano Interactions at the Subcellular Scale. Nanoscale, 2021, 13(38), 16324–16338. doi: 10.1039/D1NR04582B
9. Peplau, E.; De Rose, F.; Eichinger, A.; Reder, S.; Mittelh?user, M.; Scafetta, G.; Schwaiger, M.; Weber, W. A.; Bartolazzi, A.; D’Alessandria, C.; Skerra, A. Effective Rational Humanization of a PASylated Anti-Galectin-3 Fab for the Sensitive PET Imaging of Thyroid Cancer in Vivo. Sci Rep, 2021, 11(1), 7358. doi: 10.1038/s41598-021-86641-0
10. Mitin, D.E.; Chubarov, A.S. Fluorinated Human Serum Albumin as Potential 19 F Magnetic Resonance Imaging Probe. Molecules, 2023, 28(4), 1695. doi: 10.3390/molecules28041695
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