LIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit, for 633 or 635 nm excitation
LIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit, for 633 or 635 nm excitation
Invitrogen™

LIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit, for 633 or 635 nm excitation

The LIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit is used to determine the viability of cells prior to the fixationRead more
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Catalog NumberQuantity
L34976400 Assays
L3497580 assays
L10119200 Assays
Catalog number L34976
Price (USD)/ 400 assays
351.65
Online exclusive
382.00 
Save 30.35 (8%)
-
Add to cart
Quantity:
400 Assays
Price (USD)/ 400 assays
351.65
Online exclusive
382.00 
Save 30.35 (8%)
Add to cart
LIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit, for 633 or 635 nm excitation
Catalog numberL34976
Price (USD)/ 400 assays
351.65
Online exclusive
382.00 
Save 30.35 (8%)
-
Add to cart
The LIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit is used to determine the viability of cells prior to the fixation and permeabilization required for intracellular antibody staining or prior to elimination of biohazardous materials using formaldehyde fixation. This kit has been optimized and validated for use with a red laser flow cytometer.

• Stable—dyes are freeze dried in separate vials to maintain stability

• Robust—staining pattern is the same before and after fixation

• Bright signal—allows for easy distinction between live/dead cells in single channel

View a selection guide for all fixable viability dyes for flow cytometry.

Stable
Unlike products that are sold in solution, the LIVE/DEAD™ Fixable Near-IR Stain has been conveniently packaged in 40-test vials to help ensure the stability and performance of the dye over time. Amine reactive dyes in solution will lose their effectiveness over a short period of time, therefore it is recommended to completely use the vial once rehydrated. If this is not possible, aliquot the vials in small volumes and store at -80°C, avoiding freeze-thaw cycles.

Robust
Dead cell discriminator stains can lose sensitivity after treatment with fixatives such as formaldehyde or ethanol-based fixation methods required for intracellular phosphorylation studies. The LIVE/DEAD™ Fixable Near-IR Stain is an amine reactive dye that binds covalently to intracellular and extracellular amines, and the staining pattern is preserved following formaldehyde fixation.

Optimal brightness
The LIVE/DEAD™ Fixable Near-IR stain was selected based on its fluorescent properties to provide a bright signal when excited with a red laser. The near-IR fluorescent reactive dye has an excitation maximum of ∼633 nm making it ideal for use with the red or HeNe laser with an emission of ∼750 nm. Since live and dead cells can be discriminated using a single dye and a single channel of a flow cytometer, it is an ideal choice for multi-color experiments.

How it works
In cells with compromised membranes, the dye reacts with free amines both in the cell interior and on the cell surface, yielding intense fluorescent staining. In viable cells, the dye's reactivity is restricted to the cell-surface amines, resulting in less intense fluorescence. The difference in intensity is typically greater than 50-fold between live and dead cells, allowing for easy discrimination.

Colors available
LIVE/DEAD™ Fixable Dead Cell Stains are available in a wide variety of colors to meet your multi-color panel needs.
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Cell PermeabilityImpermeant
Cell TypeEukaryotic Cells
ColorNear-IR
DescriptionLIVE/DEAD™ Fixable Near-IR Dead Cell Stain Kit, for 633 or 635 nm excitation
Detection MethodFluorescence
For Use With (Application)Viability Assay
For Use With (Equipment)Flow Cytometer
Product TypeStain
Dye TypeLIVE/DEAD™ FixableNear-IR Dead Cell Stain
Emission750 nm
Excitation Wavelength Range633 nm
FormSolid
FormatTube(s)
Product LineLIVE/DEAD™
Quantity400 Assays
Shipping ConditionRoom Temperature
SolubilityDMSO (Dimethylsulfoxide)
Unit Size400 assays
Contents & Storage
Contains 10 vials of LIVE/DEAD™ fixable dead cell stain and 500 μL DMSO.

Store at -20°C.