Fixable Viability Dye eFluor® 450

GPR: General Purpose Reagents. For Laboratory Use.

SKU# 65-0863

Cat. No. Size
65-0863-14 100 tests
65-0863-18 500 tests
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Data for Fixable Viability Dye eFluor® 450.

BALB/c thymocytes were uncultured (left) or cultured overnight at 37°C (right) and then stained...View More

  • Data for Fixable Viability Dye eFluor® 450.
Description

Description: Fixable Viability Dye eFluor® 450 is a viability dye that can be used to irreversibly label dead cells prior to cryopreservation, fixation and/or permeabilization procedures. Unlike 7-AAD and propidium iodide, cells labeled with Fixable Viability Dyes can be washed, fixed, permabilized, and stained for intracellular antigens without any loss of staining intensity of the dead cells. Thus, using Fixable Viability Dyes allows dead cells to be excluded from analysis when intracellular targets are being studied. Fixable Viability Dyes may be used to label cells from all species.

Fixable Viability Dye eFluor® 450 can be excited by the violet (405 nm) laser line and has a peak excitation of 450 nm that can be detected using a 450/50 band pass filter (equivalent to eFluor® 450 or Pacific Blue®). Please make sure that your instrument is capable of detecting this dye. For compensation, it is recommended to use a sample of the cells of interest stained with the Fixable Viability Dye. If the percentage of dead cells is expected to be less than 5%, then it is recommended to take a small aliquot of cells and heat them at 65°C for 1 minute then immediately place on ice for 1 minute. After this treatment, the heat-killed cells can be combined 1:1 with live cells and then stained with the Fixable Viability Dye.

Fixable Viability Dye eFluor® 450 is supplied as a pre-diluted solution prepared in high-quality, anhydrous DMSO. It should be protected from light and moisture. Store at -80°C with dessicant. It may be freeze-thawed up to 20 times. Allow vial to equilibrate to room temperature before opening.

Details
Reported Applications Flow Cytometric Analysis
Documentation
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References

References: Verhagen J, Burton BR, Britton GJ, Shepard ER, Anderton SM, Wraith DC. Modification of the FoxP3 transcription factor principally affects inducible T regulatory cells in a model of Experimental Autoimmune Encephalomyelitis. PLOS One. 2013;8(4):e61334. Kidane YH, Lawrence C, Murali TM. (FVD e450)


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Area of BiologyMiscellaneous