ATP-independent membrane depolarization with ischemia in the oxygen-ventilated isolated rat lung

被引:47
作者
Al-Mehdi, AB [1 ]
Zhao, GC [1 ]
Fisher, AB [1 ]
机构
[1] Univ Penn, Med Ctr, Inst Environm Med, Philadelphia, PA 19104 USA
关键词
D O I
10.1165/ajrcmb.18.5.2834
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
We hypothesize that lung ischemic injury is related to cessation of flow leading to endothelial cell membrane depolarization and activation of oxidant-generating systems. Cell membrane potential was assessed in isolated, oxygen ventilated, Krebs-Ringer bicarbonate buffer-dextran-perfused rat lungs by lung surface fluorescence after infusion of bis-oxonol or 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolyl-carbocyanine iodide (JC-1), voltage-sensitive dyes. Surface fluorometry showed increased bis-oxonol fluorescence (34.7 +/- 3.3% above baseline) and decreased JC-1 fluorescence (24.5 +/- 4.5% below baseline) with ischemia, compatible with membrane depolarization. Fluorescence change was initiated within 1-2 min of the onset of ischemia and was rapidly reversible with repel-fusion. Fluorescence changes varied with perfusion flow rate; maximal increase occurred with the transition from 1.8 ml/min to zero flow. Elevation of static intravascular pressure resulted in only a minor increase of bis-oxonol fluorescence. In situ subpleural fluorescence microscopy showed that endothelial cells are the major site of the increased bisoxonol fluorescence signal with ischemia. These results indicate that endothelial cell membrane depolarization represents an early event with lung ischemia. Since the adenosine triphosphate content of lung was unchanged with ischemia in the O-2-ventilated lungs, we postulate that membrane depolarization results from elimination of shear stress, possibly via inactivation of flow-sensitive K+-channels.
引用
收藏
页码:653 / 661
页数:9
相关论文
共 27 条
[1]
Oxidant generation with K+-induced depolarization in the isolated perfused lung [J].
AlMehdi, AB ;
Shuman, H ;
Fisher, AB .
FREE RADICAL BIOLOGY AND MEDICINE, 1997, 23 (01) :47-56
[2]
AlMehdi AB, 1996, J CELL PHYSIOL, V166, P274, DOI 10.1002/(SICI)1097-4652(199602)166:2<274::AID-JCP4>3.0.CO
[3]
2-M
[4]
Intracellular generation of reactive oxygen species during nonhypoxic lung ischemia [J].
AlMehdi, AB ;
Shuman, H ;
Fisher, AB .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 1997, 272 (02) :L294-L300
[5]
ROLE OF OXYGEN IN OXIDATION OF LIPID AND PROTEIN DURING ISCHEMIA REPERFUSION IN ISOLATED PERFUSED RAT LUNG [J].
AYENE, IS ;
DODIA, C ;
FISHER, AB .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1992, 296 (01) :183-189
[6]
HYDROGEN-PEROXIDE ALTERS THE PHYSICAL STATE AND FUNCTION OF THE PLASMA-MEMBRANE OF PULMONARY-ARTERY ENDOTHELIAL-CELLS [J].
BLOCK, ER .
JOURNAL OF CELLULAR PHYSIOLOGY, 1991, 146 (03) :362-369
[7]
OXYGEN RADICALS AND HUMAN-DISEASE [J].
CROSS, CE ;
HALLIWELL, B ;
BORISH, ET ;
PRYOR, WA ;
AMES, BN ;
SAUL, RL ;
MCCORD, JM ;
HARMAN, D .
ANNALS OF INTERNAL MEDICINE, 1987, 107 (04) :526-545
[8]
MECHANICAL-STRESS MECHANISMS AND THE CELL - AN ENDOTHELIAL PARADIGM [J].
DAVIES, PF ;
TRIPATHI, SC .
CIRCULATION RESEARCH, 1993, 72 (02) :239-245
[9]
Dewey C, 1979, Adv Exp Med Biol, V115, P55
[10]
OXYGEN-DEPENDENT REPERFUSION INJURY IN THE ISOLATED RAT LUNG [J].
ECKENHOFF, RG ;
DODIA, C ;
TAN, ZT ;
FISHER, AB .
JOURNAL OF APPLIED PHYSIOLOGY, 1992, 72 (04) :1454-1460