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前列腺素 E 依次激活 E 前列腺素受体-3 和血栓素前列腺素受体,引起小鼠肾血管收缩和阻力增加。

Prostaglandin E sequentially activates E-prostanoid receptor-3 and thromboxane prostanoid receptor to evoke contraction and increase in resistance of the mouse renal vasculature.

机构信息

Cardiovascular Research Center, Shantou University Medical College, Shantou, China.

Department of Gynaecology and Obstetrics, First Affiliated Hospital, Shantou University Medical College, Shantou, China.

出版信息

FASEB J. 2020 Feb;34(2):2568-2578. doi: 10.1096/fj.201901611R. Epub 2019 Dec 18.

DOI:10.1096/fj.201901611R
PMID:31908041
Abstract

Although recognized to have an in vivo vasodepressor effect blunted by the vasoconstrictor effect of E-prostanoid receptor-3 (EP3), prostaglandin E (PGE ) evokes contractions of many vascular beds that are sensitive to antagonizing the thromboxane prostanoid receptor (TP). This study aimed to determine the direct effect of PGE on renal arteries and/or the whole renal vasculature and how each of these two receptors is involved in the responses. Experiments were performed on isolated vessels and perfused kidneys of wild-type mice and/or mice with deficiency in TP (TP ), EP3 (EP3 ), or both TP and EP3 (TP /EP3 ). Here we show that PGE (0.001-30 μM) evoked not only contraction of main renal arteries, but also a decrease of flow in perfused kidneys. EP3 diminished the response to 0.001-0.3 μM PGE , while TP reduced that to the prostanoid of higher concentrations. In TP /EP3 vessels and perfused kidneys, PGE did not evoke contraction but instead resulted in vasodilator responses. These results demonstrate that PGE functions as an overall direct vasoconstrictor of the mouse renal vasculature with an effect reflecting the vasoconstrictor activities outweighing that of dilation. Also, our results suggest that EP3 dominates the vasoconstrictor effect of PGE of low concentrations (≤0.001-0.3 μM), but its effect is further added by that of TP, which has a higher efficacy, although activated by higher concentrations (from 0.01 μM) of the same prostanoid PGE .

摘要

尽管前列腺素 E(PGE)被认为具有体内血管舒张作用,但这种作用会被 E-前列腺素受体-3(EP3)的血管收缩作用所减弱,但 PGE 仍能引起许多血管床的收缩,这些血管床对血栓素前列腺素受体(TP)敏感。本研究旨在确定 PGE 对肾动脉和/或整个肾血管的直接作用,以及这两种受体如何参与这些反应。在野生型小鼠和/或缺乏 TP(TP)、EP3(EP3)或 TP 和 EP3(TP/EP3)的小鼠的分离血管和灌注肾脏上进行了实验。结果表明,PGE(0.001-30μM)不仅引起主肾动脉收缩,还引起灌注肾脏血流量减少。EP3 减弱了对 0.001-0.3μM PGE 的反应,而 TP 降低了对较高浓度前列腺素的反应。在 TP/EP3 血管和灌注肾脏中,PGE 没有引起收缩,反而引起血管舒张反应。这些结果表明,PGE 作为小鼠肾血管的整体直接血管收缩剂发挥作用,其作用反映了收缩活性超过舒张活性。此外,我们的结果表明,EP3 主导 PGE 的低浓度(≤0.001-0.3μM)的血管收缩作用,但它的作用进一步由 TP 增加,TP 虽然由更高浓度(从 0.01μM)的相同前列腺素 PGE 激活,但具有更高的效力。

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