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MAK143

Sigma-Aldrich

Fluorometric Intracellular Ros Kit

sufficient for 200 fluorometric tests (green)

Synonyme(s) :

Fluorometric ROS Detection Kit

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About This Item

Code UNSPSC :
12161503
Nomenclature NACRES :
NA.25

Utilisation

sufficient for 200 fluorometric tests (green)

Méthode de détection

fluorometric

Maladie(s) pertinente(s)

cancer; neurological disorders

Température de stockage

−20°C

Description générale

Reactive oxygen species (ROS) are generated as a result of the reduction of oxygen during aerobic respiration and by various enzymatic systems within the cell. At physiological levels, ROS contribute to cell signaling and host defense. Increased ROS generation, above the detoxification capacity of the biological system, results in oxidative stress and cellular damage. The main damage to cells results from the ROS-induced alteration of macromolecules such as polyunsaturated fatty acids in membrane lipids, essential proteins, and DNA. ROS has been implicated in disease states, such as Alzheimer′s disease, Parkinson′s disease, cancer, and aging.

Application

Fluorometric Intracellular Ros Kit has been used in reactive oxygen species (ROS) generation assay.

Adéquation

This kit is suitable for the detection of intracellular ROS by fluorescence microplate reader or a fluorescent microscope.

Principe

The Fluorometric Intracellular ROS Assay Kit provides a sensitive, one-step fluorometric assay to detect intracellular ROS (especially superoxide and hydroxyl radicals) in live cells within 1 hour incubation. ROS react with a fluorogenic sensor localized to the cytoplasm, resulting in a fluorometric product (λex = 490/λem = 520 nm) proportional to the amount of ROS present. The assay can be performed in either a 96 or 384 multiwell plate format and read using a fluorescence microscope or a fluorescence microplate reader.

Code de la classe de stockage

10 - Combustible liquids

Classe de danger pour l'eau (WGK)

WGK 3

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


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Alberto Sola-Leyva et al.
Journal of materials chemistry. B, 8(34), 7667-7676 (2020-07-25)
Recent studies have shown the potential of magnetic hyperthermia in cancer treatments. However, the underlying mechanisms involved have not been yet fully described. In particular, the cell death related to magnetic hyperthermia observed in cultures incubated with low concentration of
Almira Georgieva et al.
Antioxidants (Basel, Switzerland), 10(10) (2021-10-24)
The wastewater from the distillation of rose oils is discharged directly into the soil because it has a limited potential for future applications. The aim of the present study was to determine in vitro the chromatographic profile, redox-modulating capacity, and
Yushan Xia et al.
PLoS pathogens, 17(9), e1009909-e1009909 (2021-09-04)
The emergence and rapid spread of multi-drug resistant (MDR) bacteria pose a serious threat to the global healthcare. There is an urgent need for new antibacterial substances or new treatment strategies to deal with the infections by MDR bacterial pathogens
Klara Zglińska et al.
PeerJ, 9, e10760-e10760 (2021-02-09)
Elaeagnus umbellata is a plant commonly used in traditional Asian medicine for its many health benefits and strong antioxidative activity. Its therapeutic potential is believed to be connected to its effect on fibroblasts. This study aimed to investigate E. umbellata
Multi-functionality redefined with colloidal carotene carbon nanoparticles for synchronized chemical imaging, enriched cellular uptake and therapy.
Misra S K, et al.
Scientific Reports, 6, 29299-29299 (2016)

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