Koepke J P
Fed Proc. 1985 Oct;44(13):2823-7.
The effects of stressful environmental stimuli on urinary sodium excretion in conscious dogs, rats, and humans are reviewed. Environmental stress can increase sympathetic neural outflow and decrease sodium excretion. The antinatriuretic response to environmental stress is accompanied by an unchanged renal blood flow and glomerular filtration rate, which indicates mediation via an increased renal tubular sodium reabsorption. The antinatriuresis resulting from environmental stress is associated with increased renal sympathetic nerve activity, and is abolished by surgical renal denervation. In the central nervous system, but not in the kidney, beta adrenoceptors mediate the increased renal sympathetic nerve activity and antinatriuretic responses to environmental stress. The increased renal sympathetic nerve activity and antinatriuretic responses to environmental stress are greater in spontaneously hypertensive rats (SHR) than in normotensive Wistar-Kyoto (WKY) rats. In SHR, but not WKY rats, the increased renal sympathetic nerve activity and antinatriuretic responses are enhanced by a high-sodium diet. Similarly, stressful competition in human young adult males results in an antinatriuresis only if a positive family history of hypertension is present. Thus, environmental stress can increase renal tubular sodium reabsorption via a central beta-adrenoceptor mechanism with activation of the renal sympathetic nerves in both conscious dogs and SHR. The antinatriuretic response to environmental stress is greater in rats and humans with a genetic predisposition to develop hypertension.
本文综述了应激性环境刺激对清醒犬、大鼠及人类尿钠排泄的影响。环境应激可增加交感神经传出冲动并减少钠排泄。对环境应激的利钠反应减弱伴随着肾血流量和肾小球滤过率不变,这表明其是通过增加肾小管钠重吸收来介导的。环境应激导致的利钠减少与肾交感神经活动增加有关,且手术去肾神经支配可消除这种现象。在中枢神经系统而非肾脏中,β肾上腺素能受体介导肾交感神经活动增加以及对环境应激的利钠反应减弱。自发性高血压大鼠(SHR)对环境应激的肾交感神经活动增加和利钠反应减弱程度大于正常血压的Wistar-Kyoto(WKY)大鼠。在SHR而非WKY大鼠中,高钠饮食可增强肾交感神经活动增加和利钠反应减弱。同样,仅在有高血压家族史的年轻成年男性中,应激性竞争才会导致利钠减少。因此,环境应激可通过中枢β肾上腺素能受体机制,激活清醒犬和SHR的肾交感神经,增加肾小管钠重吸收。对于有患高血压遗传易感性的大鼠和人类,对环境应激的利钠反应减弱更明显。