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流体流动切应力在上调小鼠足细胞前列环素受体 EP2 的表达,但不影响 EP4 的表达。

Fluid flow shear stress upregulates prostanoid receptor EP2 but not EP4 in murine podocytes.

机构信息

Section of Nephrology, Children's Mercy Hospital and University of Missouri at Kansas City, Kansas City, MO 64108, USA.

出版信息

Prostaglandins Other Lipid Mediat. 2013 Jul-Aug;104-105:49-57. doi: 10.1016/j.prostaglandins.2012.11.001. Epub 2012 Dec 20.

Abstract

Podocytes in the glomerular filtration barrier regulate the passage of plasma proteins into urine. Capillary pressure and ultrafiltration impact the structure and function of podocytes. The mechanism of podocyte injury by fluid flow shear stress (FFSS) from hyperfiltration in chronic kidney disease (CKD) is not completely understood. Recently, we demonstrated increased synthesis of prostaglandin E2 in podocytes exposed to FFSS. Here, we determine the effect of FFSS on prostanoid receptors EP1-EP4 in cultured podocytes and in Os/+ mouse kidney, a model of hyperfiltration. Results of RT-PCR, qRT-PCR, immunoblotting and immunofluorescence studies indicate that cultured podocytes express EP1, EP2 and EP4 but not EP3. FFSS resulted in upregulated expression of only EP2 in podocytes. Kidney immunostaining showed significantly increased expression of EP2 in Os/+ mice compared with littermate controls. These novel results suggest that EP2 may be responsible for mediating podocyte injury from hyperfiltration-induced augmented FFSS in CKD.

摘要

肾小球滤过屏障中的足细胞调节血浆蛋白向尿液中的滤过。毛细血管压力和超滤作用影响足细胞的结构和功能。慢性肾脏病(CKD)中超滤导致的流体切应力(FFSS)对足细胞损伤的机制尚不完全清楚。最近,我们发现在暴露于 FFSS 的足细胞中,前列腺素 E2 的合成增加。在这里,我们确定 FFSS 在培养的足细胞和 Os/+小鼠肾脏(一种超滤模型)中的前列腺素受体 EP1-EP4 的作用。RT-PCR、qRT-PCR、免疫印迹和免疫荧光研究的结果表明,培养的足细胞表达 EP1、EP2 和 EP4,但不表达 EP3。FFSS 导致足细胞中仅 EP2 的表达上调。肾脏免疫染色显示,与同窝对照相比,Os/+小鼠的 EP2 表达显著增加。这些新的结果表明,EP2 可能负责介导 CKD 中超滤诱导的增强的 FFSS 引起的足细胞损伤。

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