Flessner M F, Wall S M, Knepper M A
Laboratory of Kidney and Electrolyte Metabolism, National Heart, Lung, and Blood Institutes, Bethesda, Maryland 20892.
Am J Physiol. 1992 Jan;262(1 Pt 2):F1-7. doi: 10.1152/ajprenal.1992.262.1.F1.
Previous in vitro studies have demonstrated spontaneous bicarbonate absorption in the outer stripe portion of the rat outer medullary collecting duct (OMCD) and inner medullary collecting duct, but net acid transport has not been studied in the inner stripe of the rat OMCD (OMCDIS). When we perfused isolated OMCDIS segments with identical bath and perfusate solutions containing HCO-3 and NH4Cl, HCO-3 was spontaneously absorbed, and total ammonia was spontaneously secreted at rapid rates in tubules from both deoxycorticosterone (DOC)-treated and untreated rats. We next measured the NH3 flux due to imposed NH3 concentration gradients. Carbonic anhydrase (CA), when added to the lumen, enhanced the NH3 flux, implying an absence of endogenous CA. The NH3 permeability was 0.0042 +/- 0.0007 cm/s. By measuring the luminal pH in perfused OMCDIS segments with an imposed lumen-to-bath NH3 gradient, we determined the pH at the end of the lumen to be 0.23 units below the equilibrium pH calculated from the simultaneously measured total CO2 concentration in collected fluid, confirming the lack of luminal CA. These results are consistent with the view that ammonium secretion in the OMCDIS occurs predominantly by H+ secretion and parallel NH3 diffusion. A luminal disequilibrium pH due to H+ secretion in the absence of endogenous luminal CA enhances the NH3 entry rate. Spontaneous net acid secretion appears to occur more rapidly in the OMCD than in other parts of the rat collecting duct system.
以往的体外研究表明,大鼠外髓集合管(OMCD)外带部分和内髓集合管存在自发的碳酸氢盐吸收,但尚未对大鼠OMCD内带(OMCDIS)的净酸转运进行研究。当我们用含有HCO₃⁻和NH₄Cl的相同浴液和灌注液灌注分离的OMCDIS节段时,HCO₃⁻被自发吸收,并且在脱氧皮质酮(DOC)处理组和未处理组大鼠的肾小管中,总氨均以快速速率自发分泌。接下来,我们测量了由于施加的NH₃浓度梯度导致的NH₃通量。当向管腔中添加碳酸酐酶(CA)时,NH₃通量增加,这意味着不存在内源性CA。NH₃通透性为0.0042±0.0007 cm/s。通过在施加管腔至浴液NH₃梯度的情况下测量灌注的OMCDIS节段中的管腔pH,我们确定管腔末端的pH比根据同时测量的收集液中总CO₂浓度计算出的平衡pH低0.23个单位,证实管腔中缺乏CA。这些结果与以下观点一致,即OMCDIS中的铵分泌主要通过H⁺分泌和平行的NH₃扩散发生。在缺乏内源性管腔CA的情况下,由于H⁺分泌导致的管腔不平衡pH会提高NH₃的进入速率。自发的净酸分泌似乎在OMCD中比在大鼠集合管系统的其他部分发生得更快。