可能因为您的浏览器不支持样式,您可以更新您的浏览器到最新版本,以获取对此功能的支持,访问下面的网站,获取关于浏览器的信息:
[1]Lucas R, Verin AD, Black SM, et al. Regulators of endothelial and epithelial barrier integrity and function in acute lung injury[J]. Biocheml Pharmacol, 2009, 77(12): 1763-1772.
[2] 黄颖,张丙芳,王晓明. 氯离子通道与急性肺损伤缺氧机制间的关系[J]. 心脏杂志, 2007, 19(6):737-740.
[3]Guidot DM, Folkesson HG, Jain L, et al. Integrating acute lung injury and regulation of alveolar fluid clearance[J]. Am J Physiol Lung Cell Mol Physiol, 2006, 291(3):L301-L306.
[4]Johnson MD, Bao HF, Helms MN, et al. Functional ion channels in pulmonary alveolar type I cells support a role for type I cells in lung ion transport[J]. Proc Natl Acad Sci USA, 2006, 103(13):4964-4969.
[5]谷秀,李胜岐,赵立,等. 囊性纤维化跨膜传导调节体氯通道在离体大鼠肺泡液体清除中的作用[J]. 中华结核和呼吸杂志, 2006, 29(1):57-58.
[6]Sakuma T, Gu X, Wang Z, et al. Stimulation of alveolar epithelial fluid clearance in human lungs by exogenous epinephrine[J]. Crit Care Med, 2006, 34(3):676-681.
[7]Regnier A, Dannhoffer L, Blouquit-Laye S, et al. Expression of cystic fibrosis transmembrane conductance regulator in the human distal lung[J]. Hum Pathol, 2008, 39(3):368-376.
[8]张丙芳, 黄颖, 李勇,等. 囊性纤维化跨膜调节因子氯通道在人肺泡上皮细胞损伤中的保护作用[J]. 解放军医学杂志, 2009, 34(11): 1321-1325.
[9]Fang X, Song Y, Hirsch J, et al. Contribution of CFTR to apical-basolateral fluid transport in cultured human alveolar epithelial type Ⅱ cells[J]. Am J Physiol Lung Cell Mol Physiol, 2006, 290(2):L242-L249.
[10]谷秀, 李胜岐, 赵立,等. 囊性纤维化跨膜传导调节体氯离子通道对大鼠肺泡液体清除率的影响[J]. 中国全科杂志, 2008, 11(10): 1850-1853.
[11]Su X, Li Q, Shrestha K, et al. Interregulation of proton-gated Na+ channel3 and cystic fibrosis transmembrane conductance regulator[J]. J Biol Chem, 2006, 281(48):36960-36968.
[12]Leroy C, Prive A, Bourret JC, et al. Regulation of ENaC and CFTR expression with K+ channel modulators and effect on fluid absorption across alveolar epithelial cells[J]. Am J Physiol Lung Cell Mol Physiol, 2006, 291(6):L1207-L1219.