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内过氧化物PGH2及其类似物对肺血管床的比较效应。

Comparative effects of endoperoxide PGH2 and an analog on the pulmonary vascular bed.

作者信息

Kadowitz P J, Gruetter C A, McNamara D B, Gorman R R, Spannhake E W, Hyman A L

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1977 Jun;42(6):953-8. doi: 10.1152/jappl.1977.42.6.953.

Abstract

The effects of the prostaglandin endoperoxide, PGH2, and a stable endoperoxide analog were compared on the canine pulmonary vascular bed under conditions of controlled blood flow. The analog produced dose-related increases in lobar arterial and small vein pressure when injected into the perfused lobar artery. The increase in resistance in response to the analog was greater during retrograde perfusion than during forward perfusion. These data suggest that the analog increases resistance to flow by constricting pulmonary veins and upstream vessels. The increase in resistance was similar when the lung was perfused with dextran or blood and the response was not different when the lung was ventilated or collapsed. The response was notattenuated by indomethacin, an inhibitor of prostaglandin synthesis. These data suggest that the response to the analog is not related to changes in bronchomotor tone, platelet aggregation, or enhanced prostaglandin synthesis. Although the analog was a potent pressor substance, PGH2 itself produced only small increases in pulmonary vascular resistance. However, PGH2 had greater contractile activity than the analog on isolated helical segments of canine intrapulmonary vein. The present study suggests that endoperoxides may represent an active form of the prostaglandins in the lung but that their effects would be localized in the tissue in which they are formed because of their extremely short biologic half-life.

摘要

在血流受控的条件下,比较了前列腺素内过氧化物PGH₂和一种稳定的内过氧化物类似物对犬肺血管床的影响。将该类似物注入灌注的叶动脉时,可引起叶动脉和小静脉压力呈剂量相关的升高。逆行灌注时该类似物引起的阻力增加大于正向灌注时。这些数据表明,该类似物通过收缩肺静脉和上游血管增加血流阻力。用右旋糖酐或血液灌注肺时,阻力增加相似,且肺通气或萎陷时反应无差异。该反应不会被前列腺素合成抑制剂吲哚美辛减弱。这些数据表明,对该类似物的反应与支气管运动张力、血小板聚集或前列腺素合成增强的变化无关。尽管该类似物是一种强效升压物质,但PGH₂本身仅使肺血管阻力有小幅增加。然而,PGH₂对犬肺内静脉分离的螺旋段的收缩活性比该类似物更强。本研究表明,内过氧化物可能代表肺中前列腺素的一种活性形式,但由于其极短的生物半衰期,它们的作用将局限于其形成的组织中。

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