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离体猪肺对缺氧的血管舒张和收缩反应。

Vasodilator and constrictor responses to hypoxia in isolated pig lungs.

作者信息

Sylvester J T, Harabin A L, Peake M D, Frank R S

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1980 Nov;49(5):820-5. doi: 10.1152/jappl.1980.49.5.820.

Abstract

We examined transient and steady-state responses of the pulmonary circulation to hypoxia in isolated pig lungs perfused with autologous blood. Responses were quantified by the pulmonary artery pressure at a flow of 1 l/min (Ppa1) read directly from pressure-flow recordings. Alveolar carbon dioxide tension was constant at 38 Torr and alveolar oxygen pressure (PAO2) was varied between 670 and 0 Torr. When PAO2 was lowered progressively every 10 min, the relation between PAO2 and Ppa1 was sigmoidal, with maximum constriction occurring at a PAO2 of 0 Torr; however, if Ppa1 was allowed to reach a steady state at each level of PAO2, the relation was reproducibly and reversibly biphasic. Ppa1 increased as PAO2 decreased from 670 to 60 Torr, was maximum and stable at PAO2 between 60 and 30 Torr, and decreased as PAO2 was lowered from 30 to 0 Torr. As a result, steady-state Ppa1 at PAO2 greater than or equal to 200 Torr was similar to that at PAO2 = 0 Torr. When PAO2 was changed from 200 Torr to a constant lower level, Ppa1 required 20-30 min to achieve a steady state at PAO2 greater than or equal to 25 Torr and 40-50 min at PAO2 of 10 and 0 Torr. With the latter, the responses consisted of vasoconstriction followed by marked vasodilation. Thus pulmonary vasomotor tone was a complex function of both PAO2 and time. Attempts to explain the pulmonary vascular response to hypoxia must take these complexities into account.

摘要

我们在灌注自体血液的离体猪肺中研究了肺循环对缺氧的瞬态和稳态反应。通过直接从压力-流量记录中读取的1升/分钟流量下的肺动脉压(Ppa1)对反应进行量化。肺泡二氧化碳分压恒定在38托,肺泡氧分压(PAO2)在670至0托之间变化。当每10分钟逐渐降低PAO2时,PAO2与Ppa1之间的关系呈S形,在PAO2为0托时出现最大收缩;然而,如果让Ppa1在每个PAO2水平达到稳态,则该关系可重复且可逆地呈双相。随着PAO2从670托降至60托,Ppa1升高,在PAO2为60至30托之间时达到最大值并保持稳定,而当PAO2从30托降至0托时,Ppa1降低。结果,PAO2大于或等于200托时的稳态Ppa1与PAO2 = 0托时相似。当PAO2从200托变为恒定的较低水平时,Ppa1在PAO2大于或等于25托时需要20 - 30分钟达到稳态,在PAO2为10托和0托时需要40 - 50分钟。对于后者,反应包括血管收缩,随后是明显的血管舒张。因此,肺血管舒缩张力是PAO2和时间的复杂函数。解释肺血管对缺氧反应的尝试必须考虑到这些复杂性。

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