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AB139476

ROS/Superoxide Detection Assay试剂盒(Cell-based)

ROS/Superoxide Detection Assay Kit (Cell-based)

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(97 Publications)

ROS/Superoxide Detection Assay Kit ab139476 is designed to directly monitor real time reactive oxygen species (ROS) production in live cells using fluorescence microscopy, flow cytometry, or microplate reader.

- Compatible with phenol red, FBS and BSA
- Kit contains ROS inducer and ROS inhibitor
- Cited in over 85 publications
3 Images
Flow Cytometry - ROS/Superoxide Detection Assay Kit (Cell-based) (AB139476)
  • Flow Cyt

Supplier Data

Flow Cytometry - ROS/Superoxide Detection Assay Kit (Cell-based) (AB139476)

Flow Cytometry Analysis. Jurkat cells were induced with 100 µM pyocyanin (general ROS inducer, panel B), 200 µM antimycin A (superoxide inducer, panel C) or 1 µM of t-butylhydroperoxide (peroxide inducer, panel D), stained with two color ROS Detection Kit and analyzed using flow cytometry. Untreated cells (panel A) were used as a control. Cell debris were ungated and compensation was performed using single stained pyocyanin-treated samples. Red numbers reflect the percentage of the cells in each quadrant.

Functional Studies - ROS/Superoxide Detection Assay Kit (Cell-based) (AB139476)
  • FuncS

Unknown

Functional Studies - ROS/Superoxide Detection Assay Kit (Cell-based) (AB139476)

The level of ROS was analyzed in untreated compared to 2250 treated cells, additional NAC treatment served as a neg. Control

M.Buchholz et al., BMC Cancer., Fig 5, doi:10.1186

Fluorescence Microscopy - ROS/Superoxide Detection Assay Kit (Cell-based) (AB139476)
  • Fluorescence Microscopy

Supplier Data

Fluorescence Microscopy - ROS/Superoxide Detection Assay Kit (Cell-based) (AB139476)

Fluorescence Microscopy Profiling. Profiling of reactive oxygen species formation by Fluorescence Microscopy was achieved in HeLa cells loaded with ROS/Superoxide detection reagents (ab139476) and treated with pyocyanin. General oxidative stress levels were monitored in the green channel, while superoxide production was detected in the orange channel. Pretreatment with NAC, a general ROS inhibitor, prevents formation of ROS.

关键信息

样品类型

Suspension cells, Adherent cells

检测类型

Cell-based

检测时间

90m

检测平台

Flow cytometer, Fluorescence microscope

产品详情

ROS/Superoxide Detection Assay Kit ab139476 is designed to directly monitor real time reactive oxygen species (ROS) production in live cells using fluorescence microscopy, flow cytometry, or microplate reader.

The ROS/superoxide assay protocol is based on two fluorescent dyes: Oxidative Stress Detection Reagent (Green, Ex/Em 490/525 nm) for the detection of total ROS, and Superoxide Detection Reagent (Orange, Ex/Em 550/620 nm).

Through the combination of these two specific fluorescent probes, the kit provides a simple and specific assay for the real-time measurement of global levels of total reactive oxygen species (ROS), and of superoxides, in living cells. The kit is compatible with the major components of tissue culture media (phenol red, FBS and BSA) when used for flow cytometry or fluorescence microscopy analysis.

ROS/superoxide assay protocol summary:
- add ROS inhibitor to negative control cells and incubate for 30 min
- add ROS/superoxide detection mix (with the addition of ROS inducer for positive control cells) and incubate for 30-60 min
- remove and discard the detection mix liquid
- wash samples and analyze with fluorescence microscope, or analyze by flow cytometry or microplate reader without washing

Reagents provided in the kit are sufficient for at least 200 tests using Fluorescent Microscopy or 50 tests using Flow Cytometry. **Related products** Review the , or the full 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 . 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.

规格

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性能和储存信息

运输条件
Dry Ice
推荐的短期储存条件
-80°C
推荐的长期储存条件
-80°C
储存信息
-80°C

产品实验方案

靶点信息

文献 (97)

Recent publications for all applications. Explore the full list and refine your search

PloS one 20:e0321998 PubMed40397908

2025

Small-molecule inhibitors of 6-phosphofructo-1-kinase simultaneously suppress lactate and superoxide generation in cancer cells.

Applications

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Species

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Samo Lešnik,Janez Konc,Tina Vodopivec,Katja Čamernik,Urška Karolina Potokar,Matic Legiša

Journal of cosmetic dermatology 24:e16664 PubMed40178310

2025

In Vitro, Ex Vivo, Instrumental, and Clinical Assessment of a Novel Anti-aging Serum Targeting Oxidative Stress.

Applications

Unspecified application

Species

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Sayantani Goswami,Jin Namkoong,Marwa El Hajoui,Ewelina Lesniak,Joanna Wu

Pharmaceuticals (Basel, Switzerland) 18: PubMed40143180

2025

Synergistic Effects of Low-Frequency Ultrasound and Therapeutic Agents on Endothelial and Renal Cells: Emphasis on Cell Functionality, Oxidative Stress, and Inflammatory Markers.

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Ieva Čiapienė,Joris Vėžys,Vaiva Lesauskaitė,Indrė Matulevičiūtė,Ugnė Meškauskaitė,Vilius Skipskis,Arvydas Strazdauskas,Sonata Trumbeckaitė,Algimantas Bubulis,Vytautas Jūrėnas,Vytautas Ostaševičius,Vytenis Tamakauskas,Vacis Tatarūnas

Cardiovascular diabetology 23:381 PubMed39462409

2024

Endothelial KLF11 is a novel protector against diabetic atherosclerosis.

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Species

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Guizhen Zhao,Yang Zhao,Wenying Liang,Haocheng Lu,Hongyu Liu,Yongjie Deng,Tianqing Zhu,Yanhong Guo,Lin Chang,Minerva T Garcia-Barrio,Y Eugene Chen,Jifeng Zhang

Microbial biotechnology 17:e70002 PubMed39212141

2024

Thermophilic fungus uses anthraquinones to modulate ferrous excretion, sterol-mediated endocytosis, and iron storage in response to cold stress.

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Shuhong Li,Donglou Wang,Jiangbo He,Chunhua Liao,Zhangxin Zuo,Shenghong Li,Xuemei Niu

Viruses 16: PubMed39205283

2024

The M2 Protein of the Influenza A Virus Interacts with PEX19 to Facilitate Virus Replication by Disrupting the Function of Peroxisome.

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Species

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Tanbin Liu,Libin Liang,Pu Zhao,Weipeng Lin,Yichao Zhuang,Li Jiang,Hualan Chen,Chengjun Li

Cancer medicine 13:e70031 PubMed39114948

2024

Mechanism and rational combinations with GP-2250, a novel oxathiazine derivative, in ovarian cancer.

Applications

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Species

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Mark S Kim,Deanna Glassman,Katelyn F Handley,Adrian Lankenau Ahumada,Nicholas B Jennings,Emine Bayraktar,Katherine Foster,Robiya Joseph,Sanghoon Lee,Robert L Coleman,Anil K Sood

Cardiovascular diabetology 23:273 PubMed39049086

2024

Effect of extracellular matrix stiffness on efficacy of Dapagliflozin for diabetic cardiomyopathy.

Applications

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Species

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Tong Zhu,Zhaoyang Ye,Jingjing Song,Junjie Zhang,Yuxiang Zhao,Feng Xu,Jun Wang,Xin Huang,Bin Gao,Fei Li

International journal of molecular sciences 25: PubMed39000432

2024

Bitter Taste Receptor 46 (hTAS2R46) Protects Monocytes/Macrophages from Oxidative Stress.

Applications

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Species

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Maria Talmon,Lara Camillo,Ilaria Vietti,Federica Pollastro,Luigia Grazia Fresu

PloS one 19:e0302031 PubMed38603692

2024

Specific nanoprobe design for MRI: Targeting laminin in the blood-brain barrier to follow alteration due to neuroinflammation.

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Species

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Juan F Zapata-Acevedo,Mónica Losada-Barragán,Johann F Osma,Juan C Cruz,Andreas Reiber,Klaus G Petry,Amael Caillard,Audrey Sauldubois,Daniel Llamosa Pérez,Aníbal José Morillo Zárate,Sonia Bermúdez Muñoz,Agustín Daza Moreno,Rafaela V Silva,Carmen Infante-Duarte,William Chamorro-Coral,Rodrigo E González-Reyes,Karina Vargas-Sánchez
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