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蟾蜍膀胱对氯化锂的结构和功能反应

Structural and functional response of toad urinary bladder to LiCl.

作者信息

Fernandez-Repollet E, LeFurgey A, Hardy M A, Tisher C C

出版信息

Kidney Int. 1983 Dec;24(6):719-30. doi: 10.1038/ki.1983.219.

Abstract

The physiological and morphological response of toad urinary bladder was examined during mucosal exposure of LiCl both with and without vasopressin (VP). With 20 or 100 mU/ml of VP in the serosal bath there was a decrease in Jv between the first and second VP stimulation in LiCl-treated bladders (VP20, -14 +/- 6%; VP100, -16 +/- 5%) that was not different from that observed without LiCl (VP20, -8 +/- 3%, P = NS). However, with 1 mU/ml of VP, a significant decrease in Jv was evident in LiCl-treated (-30 +/- 10%) versus control sacs (+6 +/- 8%; P less than 0.02). At all VP concentrations tested, a significant decrease in SCC and PD was observed between the first stimulation without LiCl and the second stimulation with LiCl. Both osmotic (Pf) and diffusional water permeability (Pd) were increased significantly with 11 mM LiCl only, while neither basal nor VP-stimulated urea permeability (Pu) was affected. Morphological changes paralleled the physiological alterations induced by LiCl. These data demonstrate that LiCl interferes with the osmotic response of the toad bladder to low concentrations of VP, and increases both Pf and Pd while leaving Pu unaffected. These findings coupled with the cell swelling and intracellular vacuolization suggest the presence of a defect in transepithelial water movement somewhere beyond the apical membrane of the granular cell exposed to LiCl.

摘要

在有和没有抗利尿激素(VP)的情况下,研究了蟾蜍膀胱黏膜暴露于LiCl期间的生理和形态学反应。在浆膜浴中加入20或100 mU/ml的VP时,LiCl处理的膀胱在第一次和第二次VP刺激之间的跨上皮水流量(Jv)下降(VP20,-14±6%;VP100,-16±5%),这与未用LiCl处理时观察到的情况无差异(VP20,-8±3%,P = 无显著性差异)。然而,加入1 mU/ml的VP时,LiCl处理的膀胱Jv显著下降(-30±10%),而对照囊泡则上升(+6±8%;P<0.02)。在所有测试的VP浓度下,未用LiCl处理的第一次刺激和用LiCl处理的第二次刺激之间,短路电流(SCC)和跨上皮电位差(PD)显著下降。仅在11 mM LiCl时,渗透水通透性(Pf)和扩散水通透性(Pd)均显著增加,而基础和VP刺激的尿素通透性(Pu)均未受影响。形态学变化与LiCl诱导的生理改变平行。这些数据表明,LiCl干扰蟾蜍膀胱对低浓度VP的渗透反应,并增加Pf和Pd,而不影响Pu。这些发现与细胞肿胀和细胞内空泡化相结合,表明在暴露于LiCl的颗粒细胞顶端膜之外的某个部位,跨上皮水转运存在缺陷。

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