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1 Vial

Ref. REZ-1101025-1

photos non contractuelles

Neuf 644.00 H.T.


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Détails Produit

ReZolve-Alkyne™ is a cell permeable luminescent alkyne probe which is ideal for conjugation to a range of biological and non-biological targets by copper facilitated 'click' reactions. This luminescent tag offers a large Stokes shift (Ex/Em 405/570nm) ideal for fluorescent detection by both microscopy or flow cytometry. This product is also suited to multiphoton microscopy. ReZolve-Alkyne™ tags are highly resistant to photobleaching, allowing more time for image acquisition.

Key Attributes:


  • Suitable for conjugating to azide-functionalized molecules

  • Simple 'Click' chemistry coupling protocol

  • Highly resistant to photobleaching

  • Large stoke shift (Ex/Em 405nm / 570nm)

  • Compatible with other fluorescent dyes

  • Ideal for epi-fluorescence, confocal and multiphoton imaging

  • Stable at room temperature

Product Details
Product Type Chemical


MW 619.6
CAS 2070860-85-2
Appearance Solid.
Solubility Soluble in DMSO, dichloromethane or difluoromethane. For more information on Click-Chemistry application see protocol.
Declaration Manufactured by ReZolve Scientific.
Other Product Data

Click here for Original Manufacturer Product Data
Our product description may differ slightly from the original manufacturers product datasheet. For more information on applications please download the Preparation & Staining Protocol. The Expiry Date on the labels is based on storage at Room Temperature only.

Smiles [H]C#CC(C=C1)=CC=C1C2=N[N-](N=N2)[Re+]3([N]4=CC=CC(C=C5)=C4C6=C5C=CC=[N]63)(C=O)(C=O)C=O
Shipping and Handling
Shipping AMBIENT
Short Term Storage +20°C
Long Term Storage -20°C
Handling Advice Protect from light.
Protect from light when in solution.
Use/Stability Stable for at least 6 months when stored at +20°C.
Stable for at least 2 years after receipt when stored at -20°C.
Protocols Download PDF
Application Note Download PDF
MSDS Download PDF
Product Specification Sheet
Datasheet Download PDF


Product References
  1. Imaging nuclear, endoplasmic reticulum and plasma membrane events in real time: C.A. Bader, et al.; FEBS Lett. 590, 3051 (2016)