Tseng C M, McGeady M, Privett T, Dunn A, Sylvester J T
Department of Medicine, Johns Hopkins Medical Institutions, Baltimore, Maryland 21205.
J Appl Physiol (1985). 1990 Jan;68(1):253-9. doi: 10.1152/jappl.1990.68.1.253.
To evaluate leukotriene (LT) C4 as a mediator of hypoxic pulmonary vasoconstriction, we examined the effects of FPL55712, a putative LT antagonist, and indomethacin, a cyclooxygenase inhibitor, on vasopressor responses to LTC4 and hypoxia (inspired O2 tension = 25 Torr) in isolated ferret lungs perfused with a constant flow (50 ml.kg-1.min-1). Pulmonary arterial injections of LTC4 caused dose-related increases in pulmonary arterial pressure during perfusion with physiological salt solution containing Ficoll (4 g/dl). FPL55712 caused concentration-related inhibition of the pressor response to LTC4 (0.6 micrograms). Although 10 micrograms/ml FPL55712 inhibited the LTC4 pressor response by 61%, it did not alter the response to hypoxia. At 100 microgram/ml, FPL55712 inhibited the responses to LTC4 and hypoxia by 73 and 71%, respectively, but also attenuated the vasoconstrictor responses to prostaglandin F2 alpha (78% at 8 micrograms), phenylephrine (68% at 100 micrograms), and KCl (51% at 40 mM). At 0.5 microgram/ml, indomethacin significantly attenuated the pressor response to arachidonic acid but did not alter responses to LTC4 or hypoxia. These results suggest that in isolated ferret lungs 1) the vasoconstrictor response to LTC4 did not depend on release of cyclooxygenase products and 2) LTC4 did not mediate hypoxic vasoconstriction.
为了评估白三烯(LT)C4作为低氧性肺血管收缩介质的作用,我们研究了假定的LT拮抗剂FPL55712和环氧化酶抑制剂吲哚美辛对在以恒定流量(50 ml·kg-1·min-1)灌注的离体雪貂肺中,LTC4和低氧(吸入氧分压=25 Torr)引起的血管升压反应的影响。在含有Ficoll(4 g/dl)的生理盐溶液灌注期间,肺动脉注射LTC4导致肺动脉压呈剂量相关的升高。FPL55712对LTC4(0.6微克)的升压反应产生浓度相关的抑制作用。尽管10微克/毫升的FPL55712可使LTC4升压反应抑制61%,但它并未改变对低氧的反应。在100微克/毫升时,FPL55712分别使对LTC4和低氧的反应抑制73%和71%,但也减弱了对前列腺素F2α(8微克时为78%)、去氧肾上腺素(100微克时为68%)和氯化钾(40 mM时为51%)的血管收缩反应。在0.5微克/毫升时,吲哚美辛显著减弱了对花生四烯酸的升压反应,但未改变对LTC4或低氧的反应。这些结果表明,在离体雪貂肺中:1)对LTC4的血管收缩反应不依赖于环氧化酶产物的释放;2)LTC4不介导低氧性血管收缩。