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在 Dahl 盐敏感大鼠中,髓袢氯化物摄取增加先于高血压出现。

Increased loop chloride uptake precedes hypertension in Dahl salt-sensitive rats.

作者信息

Kirchner K A

机构信息

Department of Medicine, University of Mississippi Medical Center, Jackson 39216-4505.

出版信息

Am J Physiol. 1992 Feb;262(2 Pt 2):R263-8. doi: 10.1152/ajpregu.1992.262.2.R263.

Abstract

When studied at equivalent renal perfusion pressures, loop segment chloride reabsorption is greater in hypertensive Dahl salt-sensitive (S) than Dahl salt-resistant (R) rats. To determine whether this difference in loop reabsorption is present before the onset of hypertension, volume expanded and euvolemic Dahl rats maintained on low NaCl diets were examined using micropuncture and in vivo microperfusion techniques. Neuroendocrine differences between groups were eliminated by renal denervation and fixing plasma aldosterone, norepinephrine, and vasopressin levels. After volume expansion, urinary NaCl excretion was less in S than R rats. Early distal tubule fluid-to-plasma chloride and inulin (TF/PCl/IN) ratio and chloride delivery were also less while loop chloride reabsorption was greater in S rats. Proximal delivery was not different between groups. In euvolemia, urinary NaCl excretion and loop chloride reabsorption were not different between S and R rats. However, when loop chloride delivery was increased by microperfusion techniques, lower distal TF/PCl/IN ratios and greater loop chloride reabsorption were clearly demonstrated in euvolemic S rats. Thus loop chloride reabsorption is greater in S than R rats before the development of hypertension. This difference depends on increasing delivery rates for its manifestation.

摘要

当在等效肾灌注压下进行研究时,高血压的 Dahl 盐敏感(S)大鼠的髓袢节段氯化物重吸收比 Dahl 盐抵抗(R)大鼠更大。为了确定这种髓袢重吸收差异是否在高血压发作之前就已存在,我们使用微穿刺和体内微灌注技术对维持低 NaCl 饮食的容量扩张和血容量正常的 Dahl 大鼠进行了检查。通过肾去神经支配和固定血浆醛固酮、去甲肾上腺素和血管加压素水平,消除了各组之间的神经内分泌差异。容量扩张后,S 大鼠的尿 NaCl 排泄量低于 R 大鼠。早期远端小管液与血浆氯化物和菊粉(TF/PCl/IN)比值以及氯化物输送量在 S 大鼠中也较低,而髓袢氯化物重吸收在 S 大鼠中更大。各组之间近端输送没有差异。在血容量正常的情况下,S 大鼠和 R 大鼠之间的尿 NaCl 排泄和髓袢氯化物重吸收没有差异。然而,当通过微灌注技术增加髓袢氯化物输送时,在血容量正常的 S 大鼠中明显表现出较低的远端 TF/PCl/IN 比值和更大的髓袢氯化物重吸收。因此,在高血压发展之前,S 大鼠的髓袢氯化物重吸收比 R 大鼠更大。这种差异取决于增加输送速率以表现出来。

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