3 Results for "

widefield microscopy

" in MedChemExpress (MCE) Product Catalog:
Products (3)

3 Results for "widefield microscopy" in MCE Product Catalog:

83
83 Cited Publications
Cat. No.: HY-116215
CAS No.: 186689-07-6
Pureté:  99.74%
Target:  

Fluorescent Dye

Domaines de recherche:  

Others

2-NBDG is a fluorescently-labeled deoxyglucose analog that is used primarily to directly monitor glucose uptake by living cells and tissues. It is also used as a topical contrast reagent for the detection of neoplasia. 2-NBDG can be used in real-time confocal, high-resolution, or wide-field fluorescence microscopy as well as in flow cytometry. The probe can be excited by the Argon laser at 488 nm to give the environment-sensitive fluorescence. It has lower photostability than the rhodamine-based fluorescent probes.
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Cat. No.: HY-DY1019
CAS No.: 186689-07-6
2-NBDG (solution) is a fluorescently-labeled deoxyglucose analog that is used primarily to directly monitor glucose uptake by living cells and tissues. It is also used as a topical contrast reagent for the detection of neoplasia. 2-NBDG can be used in real-time confocal, high-resolution, or wide-field fluorescence microscopy as well as in flow cytometry. The probe can be excited by the Argon laser at 488 nm to give the environment-sensitive fluorescence. It has lower photostability than the rhodamine-based fluorescent probes.
Solvent and Concentration: Sterile PBS: 5 mM
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Cat. No.: HY-D3361
Target:  

Fluorescent Dye

Domaines de recherche:  

Others

JF639-HTL is a deep-red fluorescent dye belonging to the Janelia Fluor series and also a HaloTag ligand. JF639-HTL contains a methoxy group as the R substituent, which forms a specific covalent bond with HaloTag fusion proteins. JF639-HTL is fluorogenic, exhibiting low background fluorescence in solution and a significant fluorescence enhancement upon binding to proteins. It also possesses cell permeability and excellent photostability. JF639-HTL can be used in studies related to fluorescent labeling, localization tracking, and pulse-chase imaging of proteins in living cells .
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