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S86543

20-HETE

源叶(MedMol) 95%
  • 英文名:
  • 20-HETE
  • 别名:
  • 20-羟基二十碳-5Z,8Z,11Z,14Z-四烯酸
  • CAS号:
  • 79551-86-3
  • 分子式:
  • C20H32O3
  • 分子量:
  • 320.47
  • MDL:
  • MFCD00171542
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参考文献(1篇)

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  • 提示:详情请下载说明书。
  • 产品描述: 20-HETE (20-hydroxy Arachidonic Acid) is a CYP450 metabolite and a potent vasoconstrictor and it is an endogenous inhibitor of the large-conductance Ca2+-activated K+ channel in renal arterioles. 20-HETE increases NADPH oxidase, ROS, and NF-κB activity, and it also inhibits endothelial NO synthase and inhibits apoptosis of pulmonary artery smooth muscle cells. 20-HETE constricts smooth muscles, stimulates smooth muscle proliferation and migration.
  • 体内研究:
    In Sprague-Dawley rats, administration of the 20-HETE inhibitor HET0016 or the 20-HETE antagonist 20-HEDE preventes DHT-induced increases in blood pressure as well as abrogates DHT-induced increases in the media-to-lumen ratio (M/L), media thickness, and collagen IV deposition in renal interlobar arteries. 20-HETE is a key regulator of microvascular remodeling in hypertension; its effect is independent of blood pressure elevation and androgen levels. 20-HETE contributes to DHT-induced vascular remodeling independent of blood pressure elevation. In Cyp4a14-/- mice, which display androgen-driven and 20-HETE-dependent hypertension, treatment with the 20-HETE antagonist abolishes remodeling of renal resistance arteries measured as media thickness and M/L.
  • 参考文献:
    1. Zou AP, et al. 20-HETE is an endogenous inhibitor of the large-conductance Ca(2+)-activated K+ channel in renal arterioles. Am J Physiol. 1996 Jan;270(1 Pt 2):R228-37. 2. Ding Y, et al. 20-HETE induces remodeling of renal resistance arteries independent of blood pressure elevation in hypertension. Am J Physiol Renal Physiol. 2013 Sep 1;305(5):F753-63.
  • 溶解性: Soluble  in  DMSO、Ethanol
  • 保存条件: -20℃
  • 配置溶液浓度参考:
    1mg 5mg 10mg
    1 mM 3.12 ml 15.602 ml 31.204 ml
    5 mM 0.624 ml 3.12 ml 6.241 ml
    10 mM 0.312 ml 1.56 ml 3.12 ml
    50 mM 0.062 ml 0.312 ml 0.624 ml
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质量 (mg) = 浓度 (mM) x 体积 (mL) x 分子摩尔量 (g/mol)


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