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8-Isoprostane ELISA Kit

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    8-<wbr/>Isoprostane ELISA Kit
  • 8-<wbr/>Isoprostane ELISA Kit
Cat No: 516351
Assay Kits - Elisa
Cayman

The isoprostanes are a family of eicosanoids of non-enzymatic origin produced by the random oxidation of tissue phospholipids by oxygen radicals. Isoprostanes appear as artifacts in tissue and plasma samples which have undergone oxidative degradation ...

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Territorial Availability: Available through Bertin Technologies only in France
Product Overview:
The isoprostanes are a family of eicosanoids of non-enzymatic origin produced by the random oxidation of tissue phospholipids by oxygen radicals. Isoprostanes appear as artifacts in tissue and plasma samples which have undergone oxidative degradation during prolonged or improper storage. They also appear in the plasma and urine under normal conditions and are elevated by oxidative stress. At least one of the isoprostanes, 8-isoprostane (8-epi PGF2α), has been shown to have biological activity. It is a potent pulmonary and renal vasoconstrictor{1053} and has been implicated as a causative mediator of hepatorenal syndrome and pulmonary oxygen toxicity.{1381} 8-Isoprostane has been proposed as a marker of antioxidant deficiency and oxidative stress and elevated levels have been found in heavy smokers.{1790} 8-Isoprostane levels are also a relative indicator of sample integrity for lipid-containing samples such as serum, plasma, and whole cell preparations.{320} Plasma from healthy volunteers contains modest amounts of 8-isoprostane (40-100 pg/ml) that increase with the age of the test subject.{1638} Normal human urinary levels range from 10-50 ng/mmol creatinine, which is an order of magnitude higher than many enzymatically derived eicosanoids.{1638,5011}
Size 96 strip wells
Shipping dry ice
Custom Code 3822.19
UNSPSC code 41116104

Vacchiano, C.A., and Tempel, G.E. Role of nonenzymatically generated prostanoid, 8-iso-PGF2?, in pulmonary oxygen toxicity. J Appl Physiol 77 2912-2917 (1994).

Natarajan, R., Lanting, L., Gonzales, N., et al. Formation of an F2-

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Over the past thirty years, Cayman developed a deep knowledge base in lipid biochemistry, including research involving the arachidonic acid cascade, inositol phosphates, and cannabinoids. This knowledge enabled the production of reagents of exceptional quality for cancer, oxidative injury, epigenetics, neuroscience, inflammation, metabolism, and many additional lines of research.

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