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CELLROX DEEPRED FLOW ASSAY KIT KIT,C10491,Invitrogen

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订货号 7DM6446
品牌型号 Invitrogen C10491
货期 询货期
最小订货量 1套
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产品介绍 Product Description
规格
Compatible Cells: Mammalian Cells, Eukaryotic Cells
Excitation/Emission: CellROX® Deep Red: 644⁄665, SYTOX® blue: 444⁄480
Flow Cytometer Laser Lines: 633/635, UV or 405
For Use With (Equipment): Flow Cytometer
Label or Dye: CellROX® Deep Red Reagent
No. of Reactions: 100
Product Line: CellROX®
Shipping Condition: Wet Ice
Solubility: DMSO (Dimethylsulfoxide)
Detection Method: Fluorescent
Format: Tube(s)
储存
Contains 1 vial CellROX® Deep Red Reagent (25 µL), 1 vial SYTOX® Blue Dead Cell Stain (100 µL), 2 vials N-acetylcysteine (10 mg per vial), 1 vial tert-butyl hydroperoxide (50 µL, 70% solution in water), and 1 vial DMSO (200 µL).

Store kit at -5 to -30°C, protected from light. CellROX® reagent is air sensitive.
描述

The CellROX™ Deep Red Flow Cytometry Assay Kit enables the flow cytometric detection of reactive oxygen species (ROS) in live cells. The kit includes the novel, fluorogenic CellROX™ Deep Red Reagent, as well as SYTOX™ Blue dead cell stain, N-acetyl cysteine (an antioxidant, for negative control), and tert-butyl hydroperoxide solution (TBHP, an inducer of ROS).

View a selection guide for all CellROX® Reagents and Kits.

The CellROX™ Deep Red Flow Cytometry Assay Kit features:

• Fluorogenic probe formulated for flow cytometry that is oxidized in the presence of ROS
• Multicolor compatibility—minimal overlap with fluorophores excited by other laser lines, allowing easy multiplexing with other reagents
• Simple protocol—cells can be stained in complete media or other appropriate buffer, no need for serum free media

The CellROX™ Deep Red Detection Reagent is cell-permeable and non-fluorescent or very weakly fluorescent while in the reduced state. Upon oxidation, the reagent exhibits a strong fluorogenic signal that has absorption/emission maxima of 644/665 nm and remains localized in the cytoplasm. When used together with the included SYTOX™ Blue Dead Cell Stain, oxidatively stressed and non-stressed cells are reliably distinguished from dead cells by flow cytometry.

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