Nadler S P
Department of Medicine, University of Ottawa, Ontario, Canada.
Am J Physiol. 1990 Feb;258(2 Pt 2):F266-72. doi: 10.1152/ajprenal.1990.258.2.F266.
To assess the effects of increased tonicity on water reabsorption (Jv) in inner medullary collecting ducts (IMCD), antidiuretic hormone (ADH)-stimulated Jv and water permeability (PF) were determined in microperfused IMCD dissected from the inner medulla of rat kidney. In IMCD exposed to a 150-mosmol/kgH2O gradient in isotonic bath, ADH-stimulated PF averaged 719 +/- 93 microns/s. Symmetric addition of 75 mM NaCl to perfusate and bath resulted in a significant augmentation of ADH-stimulated PF (56%) that was reversible when initial solutions were restored. Despite the increase in PF, JV did not change but would have decreased by 16% (P less than 0.01) had PF not increased, because of the greater absolute axial increase in luminal tonicity that occurs with more hypertonic luminal solutions. When 150 mM mannitol was used to increase tonicity, similar effects were observed. However, 150 mM urea had no effect on ADH-stimulated PF. In IMCD exposed to 8-para-(chlorophenylthio)-adenosine 3',5'-cyclic monophosphate, addition of 75 mM NaCl to both and perfusate also resulted in a 76% increase in PF. These results are the first to demonstrate directly that increased effective tonicity augments ADH-stimulated PF in rat IMCD at a site distal to adenosine 3',5'-cyclic monophosphate generation. This effect may contribute to maintenance of medullary interstitial tonicity during antidiuresis by ensuring that most water reabsorption occurs more proximally within the IMCD.
为了评估渗透压升高对大鼠肾内髓集合管(IMCD)中水重吸收(Jv)的影响,我们测定了从大鼠肾内髓部分离出的经微灌注的IMCD中抗利尿激素(ADH)刺激后的Jv和水通透性(PF)。在等渗浴中暴露于150 mOsmol/kgH₂O梯度的IMCD中,ADH刺激后的PF平均为719±93微米/秒。向灌注液和浴液中对称添加75 mM NaCl会导致ADH刺激后的PF显著增加(56%),当恢复初始溶液时这种增加是可逆的。尽管PF增加了,但Jv没有变化,不过如果PF没有增加,Jv会降低16%(P<0.01),因为管腔内溶液渗透压更高时管腔轴向绝对渗透压增加更大。当使用150 mM甘露醇来增加渗透压时,观察到了类似的效果。然而,150 mM尿素对ADH刺激后的PF没有影响。在暴露于8-对-(氯苯硫基)-腺苷3',5'-环磷酸的IMCD中,向灌注液和浴液中都添加75 mM NaCl也会导致PF增加76%。这些结果首次直接证明,在大鼠IMCD中,有效渗透压升高会在腺苷3',5'-环磷酸生成位点的远端增强ADH刺激后的PF。这种作用可能通过确保大部分水重吸收在IMCD内更靠近近端发生,从而有助于在抗利尿过程中维持髓质间质渗透压。