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抗利尿期间肾脏尿素转运体的长期调节

Long-Term Regulation of Renal Urea Transporters during Antidiuresis.

作者信息

Kim Dong-Un

机构信息

Department of Pediatrics, College of Medicine, The Catholic University of Korea, Seoul, Korea.

出版信息

Electrolyte Blood Press. 2006 Mar;4(1):18-22. doi: 10.5049/EBP.2006.4.1.18.

Abstract

To produce a concentrated urine, the renal medulla needs hypertonicity for the reabsorption of free water from collecting duct. The single effect that increases interstitial tonicity in the outer medulla is the active NaCl reabsorption in the thick ascending limb, while the single effect in the inner medulla is the passive efflux of NaCl through the thin ascending limb. The passive mechanism in the inner medulla requires high interstitial urea concentration. Two main groups of urea transporters (UT-A, UT-B) are present in the kidney, which maintains the high concentration of urea in the deepest portion of the inner medulla by intra-renal urea recycling. Recent studies suggest that UT-A1 in the terminal inner medullary collecting duct is up-regulated when urine or inner medullary interstitial urea is depleted in order to enhance the reabsorption of urea, while UT-A2 in the descending thin limb of loops of Henle and UT-B in the descending vasa recta are increased when outer medullary interstitial urea concentration is high, in order to prevent the loss of urea from the medulla to the systemic circulation, thereby increasing intra-renal urea recycling. This review will summarize the functions of the renal urea transporters in urine concentration mechanism and the recent knowledge about their long-term regulation.

摘要

为了产生浓缩尿,肾髓质需要高渗状态以促进集合管对自由水的重吸收。在外髓质增加间质张力的单一效应是髓袢升支粗段对氯化钠的主动重吸收,而在内髓质的单一效应是氯化钠通过髓袢升支细段的被动外流。内髓质的被动机制需要高浓度的间质尿素。肾脏中存在两大类尿素转运体(UT-A、UT-B),它们通过肾内尿素再循环维持内髓质最深部的高尿素浓度。最近的研究表明,当尿液或内髓质间质尿素减少时,终末内髓质集合管中的UT-A1会上调,以增强尿素的重吸收;而当外髓质间质尿素浓度高时,髓袢降支细段中的UT-A2和直小血管降支中的UT-B会增加,以防止尿素从髓质流失到体循环,从而增加肾内尿素再循环。本综述将总结肾尿素转运体在尿液浓缩机制中的功能以及关于它们长期调节的最新认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9787/3894540/20099e5270e5/ebp-4-18-g001.jpg

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