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麻醉犬低频肾神经刺激期间抗利尿机制

Mechanisms of antinatriuresis during low-frequency renal nerve stimulation in anesthetized dogs.

作者信息

Osborn J L, Roman R J, Harland R W

出版信息

Am J Physiol. 1985 Sep;249(3 Pt 2):R360-7. doi: 10.1152/ajpregu.1985.249.3.R360.

Abstract

The influence of 1.0 Hz renal nerve stimulation (RNS) on the renal excretion of sodium and bicarbonate was determined in anesthetized dogs before and during inhibition of renal bicarbonate reabsorption. RNS decreased both urinary sodium and bicarbonate excretion without changing arterial pressure, renal blood flow, or glomerular filtration rate. Pharmacological blockade of bicarbonate reabsorption with acetazolamide prevented RNS-induced decreases in bicarbonate excretion and reduced the antinatriuretic response. Physiological blockade of tubular bicarbonate reabsorption with intrarenal sodium bicarbonate infusion (1 M) abolished both the antinatriuretic response to RNS and the decrease in bicarbonate excretion. This physiological blockade of neurogenic antinatriuresis resulted from alkalinization of the urine and/or peritubular blood rather than an increase in filtered sodium load, because during intrarenal infusion of 1 M sodium chloride RNS concomitantly decreased sodium and urinary bicarbonate excretion. Since antinatriuretic responses and the decrease in bicarbonate excretion response to RNS were significantly decreased by blockade of bicarbonate reabsorption (with acetazolamide and intrarenal sodium bicarbonate infusion), antinatriuresis during RNS is partly mediated by a mechanism dependent on intact bicarbonate reabsorption. The data suggest that renal nerve activity may participate in the normal regulation of acid-base balance via changes in bicarbonate excretion.

摘要

在麻醉犬中,于抑制肾碳酸氢盐重吸收之前及期间,测定了1.0赫兹肾神经刺激(RNS)对钠和碳酸氢盐肾排泄的影响。RNS降低了尿钠和碳酸氢盐排泄,而未改变动脉血压、肾血流量或肾小球滤过率。用乙酰唑胺对碳酸氢盐重吸收进行药理学阻断可防止RNS诱导的碳酸氢盐排泄减少,并降低利钠反应。用肾内输注碳酸氢钠(1 M)对肾小管碳酸氢盐重吸收进行生理性阻断,消除了对RNS的利钠反应及碳酸氢盐排泄减少。这种对神经源性利钠作用的生理性阻断是由尿液和/或肾小管周血液碱化所致,而非滤过钠负荷增加所致,因为在肾内输注1 M氯化钠期间,RNS同时降低了钠和尿碳酸氢盐排泄。由于通过阻断碳酸氢盐重吸收(用乙酰唑胺和肾内输注碳酸氢钠),对RNS的利钠反应及碳酸氢盐排泄减少反应显著降低,RNS期间的利钠作用部分由依赖完整碳酸氢盐重吸收的机制介导。数据表明,肾神经活动可能通过碳酸氢盐排泄的变化参与酸碱平衡的正常调节。

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