Nielsen V G, Duvall M D, Baird M S, Matalon S
Department of Anesthesiology, The University of Alabama at Birmingham, Birmingham, Alabama 35233, USA.
Am J Physiol. 1998 Dec;275(6):L1127-33. doi: 10.1152/ajplung.1998.275.6.L1127.
Active Na+ transport by alveolar epithelial cells has been demonstrated to contribute significantly to alveolar fluid clearance. However, the contribution of transepithelial Cl- movement to the reabsorption of isosmotic fluid across the alveolar epithelium in vivo has not been elucidated. We hypothesized that Cl- transport could be increased across the alveolar epithelium in vivo and across cultured alveolar type II cells by agents that increase intracellular cAMP (e.g., forskolin). In studies where 5% albumin in sodium methanesulfonate (a Cl--free solution) was administered into the lung, forskolin administration significantly increased intracellular influx of Cl- and fluid into the alveolar space. In vitro studies with cultured rabbit alveolar type II cell monolayers in Ussing chambers demonstrated that elevations in intracellular cAMP increase short-circuit current by increasing both Cl- secretion and Na+ reabsorption. The cystic fibrosis transmembrane conductance regulator channel blocker glibenclamide and the loop diuretic bumetanide partially decreased the forskolin-induced increase in short-circuit current. These data may explain the failure of agonist that stimulated intracellular cAMP to increase alveolar fluid clearance in the rabbit. Moreover, the data suggest that in the event Na+ absorptive pathways are damaged, transepithelial Cl- secretion and the consequent intra-alveolar fluid influx may be upregulated.
肺泡上皮细胞主动转运钠离子已被证明对肺泡液体清除有显著贡献。然而,体内跨上皮氯离子移动对肺泡上皮等渗液体重吸收的作用尚未阐明。我们推测,通过增加细胞内cAMP的物质(如福斯可林),体内肺泡上皮以及培养的II型肺泡细胞的氯离子转运可能会增加。在将甲磺酸钠(一种无氯溶液)中的5%白蛋白注入肺内的研究中,给予福斯可林显著增加了氯离子的细胞内流入以及液体进入肺泡腔。在Ussing室中对培养的兔II型肺泡细胞单层进行的体外研究表明,细胞内cAMP升高通过增加氯离子分泌和钠离子重吸收来增加短路电流。囊性纤维化跨膜电导调节通道阻滞剂格列本脲和袢利尿剂布美他尼部分降低了福斯可林诱导的短路电流增加。这些数据可能解释了刺激细胞内cAMP的激动剂未能增加兔肺泡液体清除的原因。此外,数据表明,在钠离子吸收途径受损的情况下,跨上皮氯离子分泌以及随之而来的肺泡内液体流入可能会上调。