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首页> 外文期刊>American Journal of Physiology >Effect of soluble epoxide hydrolase inhibition on epoxyeicosatrienoic acid metabolism in human blood vessels.
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Effect of soluble epoxide hydrolase inhibition on epoxyeicosatrienoic acid metabolism in human blood vessels.

机译:可溶性环氧化物水解酶抑制作用对人体血管中环氧二十碳三烯酸代谢的影响。

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We investigated the effects of soluble epoxide hydrolase (sEH) inhibition on epoxyeicosatrienoic acid (EET) metabolism in intact human blood vessels, including the human saphenous vein (HSV), coronary artery (HCA), and aorta (HA). When HSV segments were perfused with 2 micromol/l 14,15-[3H]EET for 4 h, >60% of radioactivity in the perfusion medium was converted to 14,15-dihydroxyeicosatrienoic acid (DHET). Similar results were obtained with endothelium-denuded vessels. 14,15-DHET was released from both the luminal and adventitial surfaces of the HSV. When HSVs were incubated with 14,15-[3H]EET under static (no flow) conditions, formation of 14,15-DHET was detected within 15 min and was inhibited by the selective sEH inhibitors N,N'-dicyclohexyl urea and N-cyclohexyl-N'-dodecanoic acid urea (CUDA). Similarly, CUDA inhibited the conversion of 11,12-[3H]EET to 11,12-DHET by the HSV. sEH inhibition enhanced the uptake of 14,15-[3H]EET and facilitated the formation of 10,11-epoxy-16:2, a beta-oxidation product. The HCA and HA converted 14,15-[3H]EET to DHET, and this also was inhibited by CUDA. These findings in intact human blood vessels indicate that conversion to DHET is the predominant pathway for 11,12- and 14,15-EET metabolism and that sEH inhibition can modulate EET metabolism in vascular tissue.
机译:我们研究了可溶性环氧化物水解酶(sEH)抑制对完整人类血管(包括人类隐静脉(HSV),冠状动脉(HCA)和主动脉(HA))中环氧二十碳三烯酸(EET)代谢的影响。用2 micromol / l 14,15- [3H] EET灌注HSV片段4小时后,灌注介质中> 60%的放射性转化为14,15-二羟基二十碳三烯酸(DHET)。用内皮剥除的血管获得了相似的结果。从HSV的管腔表面和外膜表面都释放出14,15-DHET。在静态(无流量)条件下将HSV与14,15- [3H] EET孵育时,在15分钟内检测到14,15-DHET的形成,并被选择性sEH抑制剂N,N'-二环己基尿素和N抑制-环己基-N'-十二酸尿素(CUDA)。同样,CUDA抑制了HSV将11,12- [3H] EET转化为11,12-DHET。 sEH抑制作用增强了对14,15- [3H] EET的吸收,并促进了10,11-环氧-16:2(β-氧化产物)的形成。 HCA和HA将14,15- [3H] EET转化为DHET,这也受到CUDA的抑制。这些在完整人体血管中的发现表明,向DHET的转化是11,12-和14,15-EET代谢的主要途径,而sEH抑制可调节血管组织中的EET代谢。

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