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8-epi-Prostaglandin F2α (CAS 27415-26-5)

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Alternate Names:
8-iso Prostaglandin F2α; 8-epi-PGF2α)
Application:
8-epi-Prostaglandin F2α is a potent vasoconstricting prostaglandin shown to agonize thromboxane receptors
CAS Number:
27415-26-5
Purity:
≥98%
Molecular Weight:
354.48
Molecular Formula:
C20H34O5
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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8-epi-Prostaglandin F2α is a biologically active isoprostane produced by the non-enzymatic free radical catalyzed peroxidation of arachidonic acid (sc-200770). This compound has demonstrated potent vasoconstriction activity in rat lung and kidney where its effects seem to be mediated through agonist activity at thromboxane receptors however, evidence exists for a separate and distinct isoprostane receptor. 8-epi-Prostaglandin F2α is also a mitogen in 3T3 cells and in vascular smooth muscle cells, and may play a role in pulmonary oxygen toxicity. Research has suggested that measurement of 8-epi-Prostaglandin F2α concentration could be used as a non-invasive indicator of oxidative stress, and that this compound may act in vivo as a signaling molecule of oxidative stress. 8-epi-Prostaglandin F2α is an activator of TXA2R. 8-epi-Prostaglandin F2α (8-EPI-PGF2α) is a naturally produced prostaglandin that serves a function in governing numerous physiological processes. This prostaglandin, derived from arachidonic acid, an essential fatty acid present in various food sources, functions as an inflammatory mediator. It participates in multiple biological processes such as vasodilation, pain perception, and immune regulation.


8-epi-Prostaglandin F2α (CAS 27415-26-5) References

  1. Glomerular actions of a free radical-generated novel prostaglandin, 8-epi-prostaglandin F2 alpha, in the rat. Evidence for interaction with thromboxane A2 receptors.  |  Takahashi, K., et al. 1992. J Clin Invest. 90: 136-41. PMID: 1386085
  2. Effects of a novel prostaglandin, 8-epi-PGF2 alpha, in rabbit lung in situ.  |  Banerjee, M., et al. 1992. Am J Physiol. 263: H660-3. PMID: 1415588
  3. The F2-isoprostane, 8-epi-prostaglandin F2 alpha, a potent agonist of the vascular thromboxane/endoperoxide receptor, is a platelet thromboxane/endoperoxide receptor antagonist.  |  Morrow, JD., et al. 1992. Prostaglandins. 44: 155-63. PMID: 1438879
  4. A series of prostaglandin F2-like compounds are produced in vivo in humans by a non-cyclooxygenase, free radical-catalyzed mechanism.  |  Morrow, JD., et al. 1990. Proc Natl Acad Sci U S A. 87: 9383-7. PMID: 2123555
  5. Noncyclooxygenase oxidative formation of a series of novel prostaglandins: analytical ramifications for measurement of eicosanoids.  |  Morrow, JD., et al. 1990. Anal Biochem. 184: 1-10. PMID: 2321745
  6. Klotho protein supplementation reduces blood pressure and renal hypertrophy in db/db mice, a model of type 2 diabetes.  |  Takenaka, T., et al. 2019. Acta Physiol (Oxf). 225: e13190. PMID: 30251773
  7. Amelioration of PM2.5-induced lung toxicity in rats by nutritional supplementation with fish oil and Vitamin E.  |  Li, J., et al. 2019. Respir Res. 20: 76. PMID: 30992001
  8. Effects of reduced exposure to cigarette smoking on changes in biomarkers of potential harm in adult smokers: results of combined analysis of two clinical studies.  |  Sakaguchi, C., et al. 2019. Biomarkers. 24: 457-468. PMID: 31084221
  9. Changes in biomarkers after 180 days of tobacco heating product use: a randomised trial.  |  Gale, N., et al. 2021. Intern Emerg Med. 16: 2201-2212. PMID: 34196886
  10. Air pollution associated acute respiratory inflammation and modification by GSTM1 and GSTT1 gene polymorphisms: a panel study of healthy undergraduates.  |  Zeng, X., et al. 2023. Environ Health. 22: 14. PMID: 36703205
  11. Molecular and functional evidence for the distinct nature of F2-isoprostane receptors from those of thromboxane A2.  |  Yura, T., et al. 1995. Adv Prostaglandin Thromboxane Leukot Res. 23: 237-9. PMID: 7732843
  12. Isoprostanes. Novel markers of endogenous lipid peroxidation and potential mediators of oxidant injury.  |  Roberts, LJ. and Morrow, JD. 1994. Ann N Y Acad Sci. 744: 237-42. PMID: 7825845
  13. Role of nonenzymatically generated prostanoid, 8-iso-PGF2 alpha, in pulmonary oxygen toxicity.  |  Vacchiano, CA. and Tempel, GE. 1994. J Appl Physiol (1985). 77: 2912-7. PMID: 7896640
  14. Antiaggregatory activity of 8-epi-prostaglandin F2 alpha and other F-series prostanoids and their binding to thromboxane A2/prostaglandin H2 receptors in human platelets.  |  Yin, K., et al. 1994. J Pharmacol Exp Ther. 270: 1192-6. PMID: 7932171
  15. Evidence for the existence of F2-isoprostane receptors on rat vascular smooth muscle cells.  |  Fukunaga, M., et al. 1993. Am J Physiol. 264: C1619-24. PMID: 8333509

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

8-epi-Prostaglandin F2α, 1 mg

sc-201261
1 mg
$196.00

8-epi-Prostaglandin F2α, 5 mg

sc-201261A
5 mg
$871.00

8-epi-Prostaglandin F2α, 10 mg

sc-201261B
10 mg
$1443.00