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血管加压素在兔皮质集合管中的剂量依赖性异质性作用。

Dose-dependent heterogenous actions of vasopressin in rabbit cortical collecting ducts.

作者信息

Ando Y, Breyer M D, Jacobson H R

机构信息

Department of Medicine, Vanderbilt University, Nashville 37232.

出版信息

Am J Physiol. 1989 Apr;256(4 Pt 2):F556-62. doi: 10.1152/ajprenal.1989.256.4.F556.

Abstract

In cortical collecting ducts (CCD), arginine vasopressin (AVP) has been proposed to autoinhibit its own hydrosmotic effect through stimulation of prostaglandin (PG) synthesis or binding to a receptor coupled to phosphatidylinositol (PI) hydrolysis, the so-called V1-receptor, with resultant elevation of intracellular Ca2+ concentration [( Ca2+]i) and activation of protein kinase C (PKC). Using isolated perfused rabbit CCD, we examined whether blocking the negative feedback by a PKC inhibitor, staurosporine (SSP), or a cyclooxygenase inhibitor, indomethacin (IND), enhances AVP-induced increase in hydraulic conductivity (Lp). The Lp induced by a pharmacological concentration (23 nM) of AVP was lower than that induced by 230 pM AVP. This blunted Lp response to 23 nM AVP was significantly restored by SSP or IND pretreatment. In contrast, both SSP and IND did not affect the Lp induced by 23 pM or 230 pM AVP. Fluorescence microscopy of isolated perfused CCD using fura-2 showed a spike-like increase in [Ca2+]i only by 23 nM but not by 23 or 230 pM AVP. We conclude that 1) AVP can increase [Ca2+]i, activate PKC, and stimulate PG synthesis in CCD with resultant autoregulation of its own hydrosmotic effect and 2) importantly, however, this negative feedback occurs only with pharmacologically high concentrations of AVP. Therefore it is unlikely that circulating AVP, via binding to receptors on CCD, autoregulates water transport through activating PG synthesis and/or PI breakdown.

摘要

在皮质集合管(CCD)中,有人提出精氨酸加压素(AVP)可通过刺激前列腺素(PG)合成或与偶联磷脂酰肌醇(PI)水解的受体(即所谓的V1受体)结合来自动抑制其自身的水渗透作用,从而导致细胞内钙离子浓度([Ca2+]i)升高和蛋白激酶C(PKC)激活。我们使用分离灌注的兔CCD,研究了用PKC抑制剂星形孢菌素(SSP)或环氧化酶抑制剂吲哚美辛(IND)阻断负反馈是否能增强AVP诱导的水力传导率(Lp)增加。药理浓度(23 nM)的AVP诱导的Lp低于230 pM AVP诱导的Lp。SSP或IND预处理可显著恢复对23 nM AVP的Lp反应减弱。相反,SSP和IND均不影响23 pM或230 pM AVP诱导的Lp。使用fura-2对分离灌注的CCD进行荧光显微镜检查显示,仅23 nM的AVP可使[Ca2+]i呈尖峰状增加,而23或230 pM的AVP则不会。我们得出结论:1)AVP可增加[Ca2+]i,激活PKC,并刺激CCD中的PG合成,从而对其自身的水渗透作用进行自动调节;2)然而,重要的是,这种负反馈仅在药理高浓度的AVP时发生。因此,循环中的AVP不太可能通过与CCD上的受体结合,通过激活PG合成和/或PI分解来自动调节水转运。

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