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心房利钠肽和锂清除率在离体灌注大鼠肾脏中的动力学及药效学

Kinetics and pharmacodynamics of atrial natriuretic peptide and lithium clearance in the isolated perfused rat kidney.

作者信息

Brier M E, Brier R A, Luft F C, Aronoff G R

机构信息

Department of Medicine, Indiana University, Indianapolis.

出版信息

J Pharmacol Exp Ther. 1987 Dec;243(3):868-73.

PMID:2961879
Abstract

We used the kinetics of atrial natriuretic peptide (ANP) and fractional lithium excretion to test the hypothesis that ANP-induced natriuresis is related directly to the ANP perfusate concentration and is mediated by a decrease in proximal tubular sodium reabsorption. Wistar rat kidneys were perfused for 90 min after administration of 1 microgram of human ANP. Comparisons were made to control perfusions. ANP had a short half-life (12.4 min) and a renal clearance 6-fold greater than the creatinine clearance. ANP treatment resulted in a significant peak increase in sodium (5.6-fold), lithium (2.1-fold), potassium (2.3-fold) and water (5.1-fold) excretion. The natriuretic response to ANP was delayed 25 min. Exogenous creatinine clearance, perfusion pressure, perfusion flow and renal vascular resistance were not affected. We conclude that the kidney eliminates ANP rapidly by mechanisms that appear to be located primarily in the peritubular circulation. The initial renal response to ANP did not follow perfusate concentrations. Rather, natriuresis increased as ANP concentrations decreased. The relationship was defined by a counterclockwise hysteresis loop. Natriuresis was not mediated by an increased delivery of sodium to the tubule, but may have been due to either a direct or an indirect action of ANP on the kidney.

摘要

我们利用心房利钠肽(ANP)的动力学和锂排泄分数来检验以下假设:ANP诱导的利钠作用直接与ANP灌注液浓度相关,并由近端肾小管钠重吸收减少介导。给予1微克人ANP后,对Wistar大鼠肾脏进行90分钟的灌注。与对照灌注进行比较。ANP的半衰期较短(12.4分钟),肾脏清除率比肌酐清除率大6倍。ANP治疗导致钠(5.6倍)、锂(2.1倍)、钾(2.3倍)和水(5.1倍)排泄显著峰值增加。对ANP的利钠反应延迟了25分钟。外源性肌酐清除率、灌注压力、灌注流量和肾血管阻力不受影响。我们得出结论,肾脏通过主要位于肾小管周围循环的机制迅速清除ANP。肾脏对ANP的初始反应并不遵循灌注液浓度。相反,随着ANP浓度降低,利钠作用增加。这种关系由逆时针滞后环定义。利钠作用不是由向肾小管输送更多的钠介导的,而是可能由于ANP对肾脏的直接或间接作用。

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