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Cell Biology Other Antibodies Oxidative Stress

Cellular ROS Assay Kit (Deep Red) (ab186029)

Price and availability

157 468 ₸

Availability

Order now and get it on Thursday February 25, 2021

Cellular ROS Assay Kit (Deep Red) (ab186029)
  • ChIP - Anti-Histone H3 antibody - Nuclear Loading Control and ChIP Grade (ab1791)
  • ChIP - Anti-Histone H3 antibody - Nuclear Loading Control and ChIP Grade (ab1791)
  • ChIP - Anti-Histone H3 antibody - Nuclear Loading Control and ChIP Grade (ab1791)

Key features and details

  • Platform: Microplate reader, Fluor. microscope, Flow cyt.
  • Assay time: 1 hr
  • Sample type: Adherent cells, Suspension cells

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Overview

  • Product name

    Cellular ROS Assay Kit (Deep Red)
    See all Oxidative Stress kits
  • Sample type

    Adherent cells, Suspension cells
  • Assay time

    1h 00m
  • Product overview

    Cellular ROS Assay Kit (Deep Red) ab186029 uses an ROS sensor to quantify ROS in live cells. The ROS Deep Red dye is cell-permeable and generates Deep Red fluorescence when it reacts with ROS. The fluorescence signal of the ROS Deep Red Dye can be measured by fluorescence microscopy, high-content imaging, microplate fluorometry, or flow cytometry.


    ab186029 provides a sensitive fluorometric, one-step assay to detect intracellular ROS (especially superoxide and hydroxyl radical) in live cells within 1 hour. The assay can be performed in a convenient 96-well or 384-well microtiter-plate format using either a fluorescence microplate reader at Ex/Em = 650/675 nm or a fluorescent microscope with with Cy5 filter.

  • Notes

    Previously called Cellular Reactive Oxygen Species Detection Assay Kit (Deep Red Fluorescence).

    Reactive oxygen species (ROS) are natural byproducts of the normal metabolism of oxygen and play important roles in cell signaling. However, during oxidative stress-related states, ROS levels can increase dramatically. The accumulation of ROS results in significant damage to cell structures. The role of oxidative stress in cardiovascular disease, diabetes, osteoporosis, stroke, inflammatory diseases, a number of neurodegenerative diseases and cancer has been well established. The ROS measurement will help to determine how oxidative stress modulates varied intracellular pathways.

    Related products

    Review the oxidative stress marker and assay guide, or the full metabolism assay guide to learn about more assays for metabolites, metabolic enzymes, mitochondrial function, and oxidative stress, and also how to assay metabolic function in live cells using your plate reader.

    To measure reactive oxygen species within cells, we recommend DCFDA / H2DCFDA - Cellular ROS Assay Kit ab113851. Alternative ROS assays are available in orange (ab186028), red (ab186027), and deep red (ab186029).  ab238535 is used to measure ROS in biofluids, culture supernatants and cell lysates. 

    For assays designed to differentiate ROS, superoxides, and reactive nitrogen species: to assay ROS and superoxides use ab139476; to assay ROS, superoxides, and reactive nitrogen species use ab139473; to assay superoxides use ab219943.

  • Platform

    Microplate reader, Fluor. microscope, Flow cyt.

Properties

  • Storage instructions

    Store at -20°C. Please refer to protocols.
  • Components 200 tests
    Assay Buffer 1 x 20ml
    DMSO 1 x 100µl
    ROS Deep Red Dye (Lyophilized) 1 vial
  • Research areas

    • Kits/ Lysates/ Other
    • Kits
    • Cell Damage Kits
    • Oxidative stress
    • Metabolism
    • Pathways and Processes
    • Redox metabolism
    • Oxidative stress
    • Kits/ Lysates/ Other
    • Kits
    • Cell Metabolism Kits
    • Oxidative Stress Assay Kits
    • Oxidative Stress

Images

  • Detection of ROS in Jurkat Cells
    Detection of ROS in Jurkat Cells

    Jurkat cells were treated without (Blue) or with 100µM TBHP (Red) for 30min at 37 °C, and then loaded with ROS Deep Red in a 5% CO2, 37 °C incubator for 1 hour. The fluorescent intensities were measured with a flow cytometer using FL2 channel

  • Detection of ROS in Hela cells.
    Detection of ROS in Hela cells.

    Hela cells were seeded overnight at 15,000 cells/90 µl/well in a black wall/clear bottom 96-well plate. The cells were untreated (control) or treated with1 mM H2O2 or 100 µM TBHP for 30 minutes at 37 °C. The ROS Deep Red assay solution (100 µl/well) was added and incubated in a 5% CO2, 37°C incubator for 1 hour. The fluorescence signal was monitored at Ex/Em = 650/675 nm (cut off = 665 nm) with bottom read mode.

  • Hela cells stained with the Cellular Reactive Oxygen Species Detection Assay Kit (Deep Red Fluorescence) (ab186029)
    Hela cells stained with the Cellular Reactive Oxygen Species Detection Assay Kit (Deep Red Fluorescence) (ab186029)

    Images of Hela cells stained with the Cellular Reactive Oxygen Species Detection Assay Kit (Deep Red Fluorescence) (ab186029) in a black wall/clear bottom 96-well plate. A: Untreated control cells. B: Cells treated with 100 µM TBHP for 30min before staining.

Please note: All products are "FOR RESEARCH USE ONLY. NOT FOR USE IN DIAGNOSTIC PROCEDURES"
For licensing inquiries, please contact partnerships@abcam.com

Alternative products to Cellular ROS Assay Kit (Deep Red) (ab186029)

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    ROS/Superoxide Detection Assay Kit (Cell-based) (ab139476)

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    Cellular ROS Assay Kit (Red) (ab186027)

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    DCFDA / H2DCFDA - Cellular ROS Assay Kit (ab113851)

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  • Cellular ROS/RNS Assay Kit (ab139473)

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    Cellular ROS Assay Kit (Orange) (ab186028)

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    DCF ROS/RNS Assay Kit (biofluids, culture supernatant, cell lysates) (ab238535)

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