Date published: 2026-8-1

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ROS Brite™ 670

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Molecular Weight:
758.85
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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ROS Brite™ 670 reagent is a fluorogenic probe to measure oxidative stress in cells using conventional fluorescence microscopy, high-content imaging, microplate fluorometry, or flow cytometry. Reactive oxygen species (ROS) are chemically reactive molecules containing oxygen. Examples include superoxide, hydroxyl radical, singlet oxygen and peroxides. ROS is highly reactive due to the presence of unpaired valence shell electrons. ROS forms as a natural byproduct of the normal metabolism of oxygen and have important roles in cell signaling and homeostasis. However, during times of environmental stress (e.g., UV or heat exposure), ROS levels can increase dramatically. This may result in significant damage to cell structures. Cumulatively, this is known as oxidative stress. ROS are also generated by exogenous sources such as ionizing radiation. Under conditions of oxidative stress, ROS production is dramatically increased, resulting in subsequent alteration of membrane lipids, proteins, and nucleic acids. Oxidative damage of these biomolecules is associated with aging as well as with a variety of pathological events, including atherosclerosis, carcinogenesis, ischemic reperfusion injury, and neurodegenerative disorders.


ROS Brite™ 670 References

  1. Carbon Dots Derived from Citric Acid and Glutathione as a Highly Efficient Intracellular Reactive Oxygen Species Scavenger for Alleviating the Lipopolysaccharide-Induced Inflammation in Macrophages.  |  Wang, H., et al. 2020. ACS Appl Mater Interfaces. 12: 41088-41095. PMID: 32805964
  2. Hepatic stellate cells specific liposomes with the Toll-like receptor 4 shRNA attenuates liver fibrosis.  |  Zhang, Y., et al. 2021. J Cell Mol Med. 25: 1299-1313. PMID: 33336563
  3. Berberine-photodynamic therapy sensitizes melanoma cells to cisplatin-induced apoptosis through ROS-mediated P38 MAPK pathways.  |  Wang, X., et al. 2021. Toxicol Appl Pharmacol. 418: 115484. PMID: 33716044
  4. Host Defense against Klebsiella pneumoniae Pneumonia Is Augmented by Lung-Derived Mesenchymal Stem Cells.  |  Rangasamy, T., et al. 2021. J Immunol. 207: 1112-1127. PMID: 34341173
  5. iPSC culture expansion selects against putatively actionable mutations in the mitochondrial genome.  |  Kosanke, M., et al. 2021. Stem Cell Reports. 16: 2488-2502. PMID: 34560000
  6. Carbon dots up-regulate heme oxygenase-1 expression towards acute lung injury therapy.  |  Wang, B., et al. 2021. J Mater Chem B. 9: 9005-9011. PMID: 34617947
  7. Defective Ag-In-S/ZnS quantum dots: an oxygen-derived free radical scavenger for mitigating macrophage inflammation.  |  Gao, N., et al. 2021. J Mater Chem B. 9: 8971-8979. PMID: 34643636
  8. A Luminol-Based Self-Illuminating Nanocage as a Reactive Oxygen Species Amplifier to Enhance Deep Tumor Penetration and Synergistic Therapy.  |  Xu, XL., et al. 2021. ACS Nano. 15: 19394-19408. PMID: 34806870
  9. Bcl-2 interacting protein 3 (BNIP3) promotes tumor growth in breast cancer under hypoxic conditions through an autophagy-dependent pathway.  |  Zhang, G., et al. 2022. Bioengineered. 13: 6280-6292. PMID: 35200106
  10. Phosphorus dendron nanomicelles as a platform for combination anti-inflammatory and antioxidative therapy of acute lung injury.  |  Li, J., et al. 2022. Theranostics. 12: 3407-3419. PMID: 35547777
  11. Preclinical Head and Neck Squamous Cell Carcinoma Models for Combined Targeted Therapy Approaches.  |  Schoenwaelder, N., et al. 2022. Cancers (Basel). 14: PMID: 35626088
  12. CDK4/6 blockade provides an alternative approach for treatment of mismatch-repair deficient tumors.  |  Salewski, I., et al. 2022. Oncoimmunology. 11: 2094583. PMID: 35845723

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

ROS Brite™ 670, 1 mg

sc-482016
1 mg
$254.00