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缺氧诱导的氧耐受性:内皮代谢功能的维持。

Hypoxia-induced oxygen tolerance: maintenance of endothelial metabolic function.

作者信息

Jackson R M, Ann H S, Oparil S

机构信息

Birmingham VA Medical Center, Alabama 35233.

出版信息

Exp Lung Res. 1988;14 Suppl:887-96. doi: 10.3109/01902148809064181.

Abstract

Hypoxia (10%-12% O2) preadaptation for 4-7 days effectively protects rats from oxygen toxicity. The present study was designed to investigate the hypothesis that the lung's microvascular endothelium shares in development of oxygen tolerance and therefore that endothelial metabolic function would be protected from oxygen toxicity by prior adaptation to hypoxia. Since pulmonary oxygen toxicity decreases lung capillary angiotensin converting enzyme (ACE) activity, we assayed converting enzyme active sites in an isolated perfused rat lung preparation as a marker for the development of oxygen toxicity and tolerance. Rats were exposed to air, hypoxia (10% O2 for 4 days), hyperoxia (greater than 95% O2 for 2 days) alone, or hypoxia followed immediately by hyperoxia. Lung vascular ACE content was quantitated by measuring the single pass binding of an iodinated-converting enzyme inhibitor, 125I-MK351A, a derivative of lisinopril. Hypoxia adaptation per se had no effect on ACE content reflected in normal 125I-MK351A binding, whereas hyperoxia exposure caused a significant decrease in lung vascular ACE. Hyperoxia-induced decreases in ACE content were prevented partially by hypoxia adaptation, indicating that ACE content on luminal endothelial surfaces was protected from oxygen toxicity. In isolated perfused lungs 125I-MK351A binding reflects development of oxygen tolerance after hypoxia preadaptation and suggests that lung endothelial metabolic function is protected from oxygen toxicity.

摘要

低氧(10%-12%氧气)预适应4-7天可有效保护大鼠免受氧中毒。本研究旨在探讨以下假设:肺微血管内皮参与了氧耐受性的形成,因此预先适应低氧可保护内皮代谢功能免受氧中毒。由于肺氧中毒会降低肺毛细血管血管紧张素转换酶(ACE)的活性,我们在离体灌注大鼠肺标本中检测转换酶活性位点,作为氧中毒和耐受性形成的标志物。将大鼠单独暴露于空气、低氧(10%氧气,持续4天)、高氧(大于95%氧气,持续2天),或先低氧后立即高氧环境中。通过测量碘化转换酶抑制剂125I-MK351A(赖诺普利的衍生物)的单次通过结合量来定量肺血管ACE含量。低氧适应本身对正常125I-MK351A结合所反映的ACE含量没有影响,而高氧暴露导致肺血管ACE显著降低。低氧适应可部分预防高氧诱导的ACE含量降低,表明管腔内内皮表面的ACE含量免受氧中毒影响。在离体灌注肺中,125I-MK351A结合反映了低氧预适应后氧耐受性的形成,提示肺内皮代谢功能免受氧中毒影响。

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