Husted R F, Stokes J B
Department of Internal Medicine, University of Iowa College of Medicine, Iowa City, USA.
Am J Physiol. 1996 Aug;271(2 Pt 2):F433-9. doi: 10.1152/ajprenal.1996.271.2.F433.
We have investigated some of the factors known or suspected to influence ion transport by the rat inner medullary collecting duct and have analyzed their actions on active Na+ absorption and active anion secretion by primary cultures. Cells from the terminal 1-2 mm (tip) of the papilla had a lower basal rate of Na+ absorption (2.0 microA/cm2) than cells from the more proximal portions (6.5 microA/cm2). Aldosterone increased Na+ transport approximately sevenfold in the tip cells and approximately threefold in the proximal cells. The magnitude of anion secretion in response to adenosine 3',5'-cyclic monophosphate (cAMP) agonists was similar in the two regions and was unaffected by aldosterone. The morphology of monolayers from both regions was also similar. In monolayers cultured from the entire inner medulla, hypertonic (100 mosM) urea, NaCl, or sucrose reduced Na+ transport but had no significant effect on anion secretion. Transforming growth factor-beta 1, known to blunt the effect of steroids on Na+ transport, had no effect on anion secretion. Finally, cAMP had no effect on Na+ transport, a result that contrasts with its effect on Na+ transport by other epithelial cells demonstrating steroid-responsive, electrogenic Na+ transport. These results demonstrate some potential differences in the magnitude of Na+ transport by position along the inner medulla. They further demonstrate separate regulation of Na+ and anion transport.
我们研究了一些已知或疑似影响大鼠髓质内集合管离子转运的因素,并分析了它们对原代培养物中活性钠吸收和活性阴离子分泌的作用。来自乳头末端1 - 2毫米(尖端)的细胞的钠吸收基础速率(2.0微安/平方厘米)低于来自更靠近近端部分的细胞(6.5微安/平方厘米)。醛固酮使尖端细胞中的钠转运增加约7倍,使近端细胞中的钠转运增加约3倍。对3',5'-环磷酸腺苷(cAMP)激动剂作出反应的阴离子分泌幅度在两个区域相似,且不受醛固酮影响。两个区域的单层细胞形态也相似。在从整个髓质内培养的单层细胞中,高渗(100 mosM)尿素、氯化钠或蔗糖会降低钠转运,但对阴离子分泌没有显著影响。已知能减弱类固醇对钠转运作用的转化生长因子-β1对阴离子分泌没有影响。最后,cAMP对钠转运没有影响,这一结果与其对其他表现出类固醇反应性、电生性钠转运的上皮细胞的钠转运作用形成对比。这些结果表明,沿髓质内不同位置的钠转运幅度存在一些潜在差异。它们进一步证明了钠和阴离子转运的独立调节。