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氟烷、布洛芬和BW755C对缺氧性肺血管收缩的作用。

The actions of halothane, ibuprofen and BW755C on hypoxic pulmonary vasoconstriction.

作者信息

Marshall C, Kim S D, Marshall B E

出版信息

Anesthesiology. 1987 Apr;66(4):537-42. doi: 10.1097/00000542-198704000-00015.

Abstract

The effect of halothane on the pressor responses to hypoxia (3% O2, 5% CO2, balance N2) and to Angiotensin II (Ang II) (0.2 microgram) has been compared in an in vitro perfused and ventilated rat lung preparation in the presence and absence of agents known to block the lipoxygenase (BW755C) and/or the cyclooxygenase (ibuprofen) pathways for arachidonic acid metabolism. Preliminary studies established the stability of the preparation (experiment 1) during two hours of observation and allowed estimation of (experiment 2) the concentration of BW755C that inhibited the HPV response by 50% (ED50 = 125 microM). In experiment 3, the rat lungs were subdivided into four groups: A, B, C, and D. Group A received the drug solvent, and B received 17 microM ibuprofen. Groups C and D received ibuprofen and, in addition, an ED50 dose of BW755C. The lungs were then tested for their response to hypoxia. In addition, groups C and D were tested for their response to 0.2 microgram Ang II. 0.5 MAC halothane was introduced into the ventilatory circuit of A, B, and D. Group C received no halothane. Responses to hypoxia and Ang II (groups C and D) were measured. Halothane was terminated and a further hypoxic response was tested in groups A and B. The results show, in group A, that the addition of halothane reduced the response to hypoxia from (mean +/- SE cm H2O) 13.4 +/- 1.56 to 6.5 +/- 1.28, a 50% reduction. The addition of ibuprofen in group B caused a 33% increase in the response, and the addition of halothane now caused only a 30% decrease.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在存在和不存在已知可阻断花生四烯酸代谢的脂氧合酶(BW755C)和/或环氧化酶(布洛芬)途径的药物的情况下,在体外灌注和通气的大鼠肺制备物中比较了氟烷对缺氧(3% O₂、5% CO₂、其余为N₂)和血管紧张素II(Ang II,0.2微克)的升压反应的影响。初步研究确定了制备物在两小时观察期内的稳定性(实验1),并允许估计(实验2)抑制低氧性肺血管收缩反应50%的BW755C浓度(半数有效剂量 = 125微摩尔)。在实验3中,将大鼠肺分为四组:A、B、C和D。A组接受药物溶剂,B组接受17微摩尔布洛芬。C组和D组接受布洛芬,此外还接受半数有效剂量的BW755C。然后测试肺对缺氧的反应。此外,测试C组和D组对0.2微克Ang II的反应。将0.5最低肺泡有效浓度的氟烷引入A、B和D组的通气回路。C组不接受氟烷。测量对缺氧和Ang II的反应(C组和D组)。终止氟烷,测试A组和B组的进一步缺氧反应。结果显示,在A组中,添加氟烷使对缺氧的反应从(平均值±标准误,厘米水柱)13.4±1.56降至6.5±1.28,降低了50%。B组中添加布洛芬使反应增加了33%,而现在添加氟烷仅导致30%的降低。(摘要截短为250字)

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