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血管加压素可激活培养的皮质集合管细胞中的氯离子传导。

Vasopressin activates a chloride conductance in cultured cortical collecting duct cells.

作者信息

Nagy E, Náray-Fejes-Tóth A, Fejes-Tóth G

机构信息

Department of Physiology, Dartmouth Medical School, Lebanon, New Hampshire 03756.

出版信息

Am J Physiol. 1994 Nov;267(5 Pt 2):F831-8. doi: 10.1152/ajprenal.1994.267.5.F831.

Abstract

In rabbit cortical collecting duct (CCD) cells, arginine vasopressin (AVP) causes a transient increase followed by a sustained depression of transepithelial potential difference (PDte). Mechanisms underlying the decrease in PDte are not well understood. In this study, we used primary cultures of rabbit CCD cells to study effects of AVP. Basolateral addition of AVP caused a dose-dependent increase in transepithelial conductance (Gte) and a corresponding decrease in PDte. A significant effect was observed at 1 pM AVP, and half-maximal response occurred at 30 pM AVP; 1 nM AVP increased Gte and decreased PDte. Replacement of apical Na+ with N-methyl-D-glucamine did not prevent the effect of AVP on Gte, suggesting that it is not mediated by an increase in apical Na+ conductance. Similarly, apical Ba2+ (1 mM) or 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS, 0.1 mM) failed to prevent the effect of AVP. On the other hand, 5-nitro-2(3-phenylpropylamino)benzoic acid (0.1 mM) caused partial inhibition, whereas substitution of apical Cl- with gluconate or cyclamate almost completely prevented the AVP-induced increase in Gte. In unidirectional ion-flux studies, 1 nM AVP caused only a modest increase in apical-to-basolateral (A-->BL) flux of 22Na and had no effect on transepithelial flux of 86Rb in either direction. On the other hand, AVP caused a pronounced increase in A-->BL flux and BL-->A flux of 36Cl, resulting in an increased net Cl- absorption. The effect of AVP on Gte could be mimicked by 8-bromo-adenosine 3',5'-cyclic monophosphate (8-bromo-cAMP) and isoproterenol, and effects of AVP and isoproterenol were not additive.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在兔皮质集合管(CCD)细胞中,精氨酸加压素(AVP)会使跨上皮电位差(PDte)先短暂升高,随后持续降低。PDte降低的潜在机制尚不清楚。在本研究中,我们使用兔CCD细胞原代培养物来研究AVP的作用。从基底外侧加入AVP会导致跨上皮电导(Gte)呈剂量依赖性增加,同时PDte相应降低。在1 pM AVP时观察到显著作用,半数最大反应发生在30 pM AVP;1 nM AVP增加Gte并降低PDte。用N - 甲基 - D - 葡糖胺替代顶端Na⁺并不能阻止AVP对Gte的作用,这表明它不是由顶端Na⁺电导增加介导的。同样,顶端加入1 mM Ba²⁺或0.1 mM 4,4'-二异硫氰基芪 - 2,2'-二磺酸(DIDS)也无法阻止AVP的作用。另一方面,0.1 mM 5 - 硝基 - 2(3 - 苯丙基氨基)苯甲酸会引起部分抑制,而用葡萄糖酸盐或环己基氨基磺酸盐替代顶端Cl⁻几乎完全阻止了AVP诱导的Gte增加。在单向离子通量研究中,1 nM AVP仅使顶端到基底外侧(A→BL)的²²Na通量适度增加,并且对双向的⁸⁶Rb跨上皮通量均无影响。另一方面,AVP使³⁶Cl的A→BL通量和BL→A通量显著增加,导致净Cl⁻吸收增加。AVP对Gte的作用可被8 - 溴 - 腺苷3',5'-环磷酸(8 - 溴 - cAMP)和异丙肾上腺素模拟,且AVP和异丙肾上腺素的作用无相加性。(摘要截短于250字)

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