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About This Item
NACRES:
NA.25
UNSPSC Code:
12161503
usage
sufficient for 100 fluorometric tests (flow cytometry, orange fluorescence)
detection method
fluorometric
relevant disease(s)
cancer
storage temp.
−20°C
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General description
Mitochondria generate a potential across their membranes due to the activities of enzymes of the electron transport chain. During apoptosis, collapse of the mitochondrial membrane potential (MMP) coincides with the opening of the mitochondrial permeability transition pores, leading to the release of cytochrome c into the cytosol, which in turn triggers other downstream events in the apoptotic cascade.
Application
This kit is suitable for the flow cytometric detection of Mitochondrial Membrane Potential in mammalian cells and for screening apoptosis inhibitors and activators.
Biochem/physiol Actions
This kit is optimized for the analysis of the MMP by flow cytometry on instruments with a 488 nm laser. The cationic hydrophobic mitochondrial potential dye accumulates in normal mitochondria, most likely due to the mitochondrial potential, resulting in an increase in fluorescence (λem = 535 nm). In apoptotic cells, MMP collapse results in decreased fluorescence. This kit can be used for monitoring apoptosis and for screening apoptosis inhibitors and activators.
This kit is optimized for the analysis of the MMP by flow cytometry on instruments with a 488 nm laser. The cationic hydrophobic mitochondrial potential dye accumulates in normal mitochondria, most likely due to the mitochondrial potential, resulting in an increase in fluorescence (λem = 535 nm). In apoptotic cells, MMP collapse results in decreased fluorescence. This kit can be used for monitoring apoptosis and for screening apoptosis inhibitors and activators.
Storage Class
10 - Combustible liquids
wgk
WGK 1
flash_point_f
Not applicable
flash_point_c
Not applicable
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Find documentation for the products that you have recently purchased in the Document Library.
Role of mitochondrial permeability transition pores in mitochondrial autophagy.
Rodriguez-Enriquez S, et al.
The International Journal of Biochemistry & Cell Biology, 36(12), 2463-2472 (2004)
Mitochondrial membrane permeabilization and cell death during myocardial infarction: roles of calcium and reactive oxygen species.
Webster K A
Future Cardiology, 8(6), 863-884 (2012)
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