ROS indicator, Ex/Em = 528/551 nm. Dihydrorhodamine 6G is the reduced form of rhodamine 6G, which is used as fluorescent mitochondrial dye. It is nonfluorescent, but it readily enters most of the cells and is oxidized by oxidative species or by cellular redox systems to the fluorescent rhodamine 6G that accumulates in mitochondrial membranes. Dihydrorhodamine 6G is useful for detecting reactive oxygen species (ROS) including superoxide
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Protein Carbonylation Assay Kit 100 tests (96 well plate)
Fast and easy method for the detection of Protein carbonylation in biological samples. Oxidative stress may cause reversible or irreversible changes in proteins. Such changes are meant to modulate protein function (redox regulation) or protect against irreversible damage that causes the inactive proteins to accumulate or become degraded.
The detection of carbonylated proteins is based on 2,4-dinitrophenylhydrazine (DNPH).
the reaction product (DNP) can be detected and quantified spectrophotometrycally at a typical absorption spectrum with a maximum at 365-375nm. Learn More
Blue Cell Viability Assay Kit offers a simple, rapid, reliable, sensitive, safe and cost-effective measurement of cell viability. The BLUE Cell viability kit detects cell viability by utilizing a blue indicator dye resazurin to measure the metabolic capacity of cells Learn More
KineticBlue™ Fluorometric Cell Viability Assay Kit offers a simple, rapid, reliable, sensitive, safe and cost-effective measurement of cell viability. Kinetic Blue™ detects cell viability by utilizing a blue and nonfluorescent dye resazurin, which is conv Learn More
Superoxide indicator, Ex/Em = 300/610 nm. Dihydroethidium (also called hydroethidium) is the chemically reduced form of the commonly used DNA dye ethidium bromide. The probe is useful to detect oxidative activities in viable cells, including respiratory burst in phagocytes. Dihydroethidium itself has blue fluorescence (Ex/Em: 355/420nm) in cells, while the oxidized form ethidium has red fluorescence (Ex/Em: 300/610 nm) upon DNA intercalation.
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