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高渗对肾髓质间质细胞前列腺素E2合成与摄取的协同调控

Coordinate control of prostaglandin E2 synthesis and uptake by hyperosmolarity in renal medullary interstitial cells.

作者信息

Pucci Michael L, Endo Shinichi, Nomura Teruhisa, Lu Run, Khine Cho, Chan Brenda S, Bao Yi, Schuster Victor L

机构信息

Department of Medicine, Albert Einstein College of Medicine, Belfer 1008, Bronx, NY 10461, USA.

出版信息

Am J Physiol Renal Physiol. 2006 Mar;290(3):F641-9. doi: 10.1152/ajprenal.00426.2004. Epub 2005 Nov 1.

Abstract

During water deprivation, prostaglandin E(2) (PGE(2)), formed by renal medullary interstitial cells (RMICs), feedback inhibits the actions of antidiuretic hormone. Interstitial PGE(2) concentrations represent the net of both PGE(2) synthesis by cyclooxygenase (COX) and PGE(2) uptake by carriers such as PGT. We used cultured RMICs to examine the effects of hyperosmolarity on both PG synthesis and PG uptake in the same RMIC. RMICs expressed endogenous PGT as assessed by mRNA and immunoblotting. RMICs rapidly took up [(3)H]PGE(2) to a level 5- to 10-fold above background and with a characteristic time-dependent "overshoot." Inhibitory constants (K(i)) for various PGs and PGT inhibitors were similar between RMICs and the cloned rat PGT. Increasing extracellular hyperosmolarity to the range of 335-485 mosM increased the net release of PGE(2) by RMICs, an effect that was concentration dependent, maximal by 24 h, reversible, and associated with increased expression of COX-2. Over the same time period, there was decreased cell-surface activity of PGT due to internalization of the transporter. With continued exposure to hyperosmolarity over 7-10 days, PGE(2) release remained elevated, COX-2 returned to baseline, and PGT-mediated uptake became markedly reduced. Our findings suggest that hyperosmolarity induces coordinated changes in COX-2-mediated PGE(2) synthesis and PGT-mediated PGE(2) uptake in RMICs.

摘要

在缺水期间,由肾髓质间质细胞(RMICs)产生的前列腺素E(2)(PGE(2))通过反馈抑制抗利尿激素的作用。间质PGE(2)浓度代表环氧化酶(COX)合成PGE(2)与诸如PGT等载体摄取PGE(2)的净值。我们使用培养的RMICs来研究高渗对同一RMIC中PG合成和PG摄取的影响。通过mRNA和免疫印迹评估,RMICs表达内源性PGT。RMICs迅速摄取[(3)H]PGE(2),使其水平比背景高5至10倍,并具有特征性的时间依赖性“过冲”。RMICs与克隆的大鼠PGT之间,各种PG和PGT抑制剂的抑制常数(K(i))相似。将细胞外渗透压增加到335 - 485 mosM范围会增加RMICs释放PGE(2)的净值,这种效应具有浓度依赖性,在24小时时达到最大,是可逆的,并且与COX - 2表达增加有关。在同一时间段内,由于转运体的内化,PGT的细胞表面活性降低。在持续暴露于高渗7 - 10天后,PGE(2)释放仍保持升高,COX - 2恢复到基线,并且PGT介导的摄取明显减少。我们的研究结果表明,高渗诱导RMICs中COX - 2介导的PGE(2)合成和PGT介导的PGE(2)摄取发生协调变化。

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