Product Description
Size: 100Test
Peroxynitrite Assay Kit (Fluorometric) (ab233469) provides a sensitive tool to measure peroxynitrite in solution.
Key facts
Detection method:Fluorescent,
Assay type:Cell-based (quantitative),
Assay Platform:Microplate reader
Product details:
Peroxynitrite Assay Kit (Fluorometric) (ab233469) provides a sensitive tool to measure peroxynitrite in solution.
Peroxynitrite Sensor Green reacts with ONOO¯ to generate a bright green fluorescent product. It specifically reacts with ONOO¯ with high selectivity over other reactive oxygen species (ROS) and reactive nitrogen species (RNS). This kit can be used with a fluorescence microplate reader and spectrometer.
Peroxynitrite (ONOO¯) is a strong oxidizing species and a highly active nitrating agent. It is formed from the reaction between superoxide radicals and nitric oxide generated in cells. It can damage a wide array of biomolecules including proteins, enzymes, lipids and nucleic acids, eventually contributing to cell death. Due to its extremely short half-life and low steady-state concentration, it has been challenging to detect and quantify peroxynitrite in solution.
Properties and Storage Information:
Shipped at conditions-Blue Ice, Appropriate short-term storage conditions--20°C, Appropriate long-term storage conditions--20°C, Storage information--20°C
Supplementary Information:
This supplementary information is collated from multiple sources and compiled automatically.
Peroxynitrite is a reactive nitrogen species with a significant role in cellular signaling. It forms rapidly through the reaction of nitric oxide (NO) and superoxide (O2-) making it a critical part of oxidative stress mechanisms. Peroxynitrite is not a protein but a small molecule so it doesn’t have a mass like proteins do. Despite being a molecule it has a significant presence in different cell types especially those under oxidative stress conditions. In interactions it often measures cellular responses to changes in redox balance.
Biological function summary
Peroxynitrite exerts its influence through oxidizing and nitrating various biological macromolecules. It primarily targets proteins lipids and DNA affecting their function and integrity. Although not part of a complex itself it disrupts cellular complexes like mitochondrial electron transport chain components. This prevention of proper ATP production highlights peroxynitrite's role in energy metabolism disruptions.
Pathways
Peroxynitrite plays a role in inflammatory and apoptotic pathways. It interacts with signaling molecules like NF-kB and caspases mediating cellular stress responses. Peroxynitrite modifies tyrosine residues on proteins leading to altered signaling functions. It closely relates to proteins such as SOD (superoxide dismutase) and iNOS (inducible nitric oxide synthase) due to its formation and effects on cellular processes.
Peroxynitrite relates to conditions like neurodegenerative diseases and cardiovascular diseases. Elevated peroxynitrite levels in these diseases indicate oxidative stress and damage to cellular components. During disorders like Alzheimer’s disease it interacts with proteins such as amyloid-beta promoting neurotoxic effects. In cardiovascular diseases peroxynitrite interacts with proteins involved in endothelial dysfunction exacerbating disease processes. The presence of antioxidants and scavengers to mitigate peroxynitrite's effects reveal its importance in disease management strategies.
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Collaboration
Tony Tang
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