Carpenter Todd C, Schomberg Stacey, Nichols Christopher, Stenmark Kurt R, Weil John V
Department of Pediatrics and Cardiovascular-Pulmonary Research Laboratory, University of Colorado Health Sciences Center, 4200 East 9th Avenue, Denver, CO 80262, USA.
Am J Physiol Lung Cell Mol Physiol. 2003 Jan;284(1):L77-83. doi: 10.1152/ajplung.00181.2002. Epub 2002 Sep 6.
Hypoxia reduces alveolar liquid clearance and the nasal potential difference, a marker of airway epithelial sodium transport. The mechanisms underlying this impaired epithelial sodium transport in vivo remain uncertain. We hypothesized that epithelial sodium transport impaired by hypoxia would recover quickly with reoxygenation and that hypoxia decreases the expression of lung epithelial sodium channels and Na,K-ATPases. We studied adult rats exposed to normoxia, hypoxia (Fi(O(2)) = 0.1) for 24 h, or hypoxia followed by recovery in normoxia. Nasal potential differences decreased by 40% with hypoxia (P < 0.001), returning to baseline levels with reoxygenation. Lung Na,K-ATPase activity decreased by 40% with hypoxia (P = 0.003), recovering to baseline levels with reoxygenation. Lung expression of mRNA encoding for epithelial sodium channel (ENaC)-alpha, -beta, and -gamma or for Na,K-ATPase-alpha(1) did not change significantly with hypoxia or recovery nor did lung expression of ENaC-alpha, ENaC-beta, Na,K-ATPase-alpha(1), or Na,K-ATPase-beta(1) protein. We conclude that subacute exposure to moderate hypoxia reversibly impairs airway epithelial sodium transport and lung Na,K-ATPase activity but that those changes are not due to changes in the lung expression of sodium-transporting proteins.
缺氧会降低肺泡液体清除率以及鼻电位差,鼻电位差是气道上皮钠转运的一个指标。体内这种上皮钠转运受损的潜在机制仍不明确。我们推测,缺氧所致的上皮钠转运受损会在复氧后迅速恢复,且缺氧会降低肺上皮钠通道和钠钾ATP酶的表达。我们研究了暴露于常氧、缺氧(吸入氧分数[Fi(O₂)] = 0.1)24小时或缺氧后再恢复至常氧的成年大鼠。缺氧时鼻电位差降低了40%(P < 0.001),复氧后恢复至基线水平。缺氧时肺钠钾ATP酶活性降低了40%(P = 0.003),复氧后恢复至基线水平。缺氧或恢复过程中,肺中编码上皮钠通道(ENaC)α、β和γ亚基或钠钾ATP酶α₁亚基的mRNA表达以及ENaCα、ENaCβ、钠钾ATP酶α₁或钠钾ATP酶β₁蛋白的肺表达均无显著变化。我们得出结论,亚急性暴露于中度缺氧会可逆性损害气道上皮钠转运和肺钠钾ATP酶活性,但这些变化并非由于肺中钠转运蛋白表达的改变所致。