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暴露于模拟微重力环境下时肾脏对醛固酮的反应性。

Renal responsiveness to aldosterone during exposure to simulated microgravity.

作者信息

Convertino V A, Luetkemeier M J, Elliott J J, Ludwig D A, Wade C E

机构信息

U.S. Army Institute of Surgical Research, Fort Sam Houston, Texas 78234-6315, USA.

出版信息

J Appl Physiol (1985). 2000 Nov;89(5):1737-43. doi: 10.1152/jappl.2000.89.5.1737.

Abstract

We measured renal functions and hormones associated with fluid regulation after a bolus injection of aldosterone (Ald) during head-down tilt (HDT) bed rest to test the hypothesis that exposure to simulated microgravity altered renal responsiveness to Ald. Six male rhesus monkeys underwent two experimental conditions (HDT and control, 72 h each) with each condition separated by 9 days of ambulatory activities to produce a crossover counterbalance design. One test condition was continuous exposure to 10 degrees HDT; the second was a control, defined as 16 h per day of 80 degrees head-up tilt and 8 h prone. After 72 h of exposure to either test condition, monkeys were moved to the prone position, and we measured the following parameters for 4 h after injection of 1-mg dose of Ald: urine volume rate (UVR); renal Na(+)/K(+) excretion ratio; renal clearances of creatinine, Na(+), osmolality, and free water; and circulating hormones [Ald, renin activity (PRA), vasopressin (AVP), and atrial natriuretic peptide (ANP)]. HDT increased Na(+) clearance, total renal Na(+) excretion, urine Na(+) concentration, and fractional Na(+) excretion, compared with the control condition, but did not alter plasma concentrations of Ald, PRA, and AVP. Administration of Ald did not alter UVR, creatinine clearance, Ald, PRA, AVP, or ANP but reduced Na(+) clearance, total renal Na(+) excretion, urinary Na(+)/K(+) ratio, and osmotic clearance. Although reductions in Na(+) clearance and excretion due to Ald were greater during HDT than during control, the differential (i.e., interaction) effect was minimal between experimental conditions. Our data suggest that exposure to microgravity increases renal excretion of Na(+) by a natriuretic mechanism other than a change in renal responsiveness to Ald.

摘要

我们在头低位倾斜(HDT)卧床休息期间静脉注射醛固酮(Ald)后,测量了与液体调节相关的肾功能和激素水平,以检验暴露于模拟微重力环境会改变肾脏对Ald反应性这一假设。六只雄性恒河猴经历了两种实验条件(HDT和对照,每种条件持续72小时),每种条件之间间隔9天的日常活动,以形成交叉平衡设计。一种测试条件是持续暴露于10度的HDT;第二种是对照,定义为每天16小时80度头高位倾斜和8小时俯卧位。在暴露于任一测试条件72小时后,将猴子置于俯卧位,在注射1毫克剂量的Ald后4小时内,我们测量了以下参数:尿流率(UVR);肾脏钠(Na⁺)/钾(K⁺)排泄率;肌酐、钠、渗透压和自由水的肾脏清除率;以及循环激素[醛固酮(Ald)、肾素活性(PRA)、血管加压素(AVP)和心钠素(ANP)]。与对照条件相比,HDT增加了钠(Na⁺)清除率、总肾脏钠(Na⁺)排泄、尿钠(Na⁺)浓度和钠(Na⁺)排泄分数,但未改变血浆中醛固酮(Ald)、肾素活性(PRA)和血管加压素(AVP)的浓度。给予醛固酮(Ald)未改变尿流率(UVR)、肌酐清除率、醛固酮(Ald)、肾素活性(PRA)、血管加压素(AVP)或心钠素(ANP),但降低了钠(Na⁺)清除率、总肾脏钠(Na⁺)排泄、尿钠(Na⁺)/钾(K⁺)比值和渗透清除率。尽管HDT期间醛固酮(Ald)导致的钠(Na⁺)清除率和排泄率降低幅度大于对照期间,但实验条件之间的差异(即相互作用)效应最小。我们的数据表明,暴露于微重力环境通过一种除肾脏对醛固酮(Ald)反应性改变之外的利钠机制增加了肾脏对钠(Na⁺)的排泄。

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