Chang S W, Dutton D, Wang H L, He L S, Stearns R, Hui A, Giacomini K M, Ortiz de Montellano P, Voelkel N F
Cardiovascular Pulmonary Research Laboratory, Webb-Waring Lung Institute, University of Colorado Health Sciences Center, Denver 80262.
Am J Physiol. 1992 Oct;263(4 Pt 1):L446-53. doi: 10.1152/ajplung.1992.263.4.L446.
Lung cytochrome P-450 has been suggested to play a role in hypoxic pulmonary vasoconstriction. We reexamined this hypothesis using specific suicide substrate inhibitors of cytochrome P-450, 1-aminobenzotriazole (1-ABT), and chloramphenicol. In isolated, blood-perfused rat lungs, 1-ABT (0.5 mg/ml) and chloramphenicol (1 mg/ml) inhibited lung microsomal cytochrome P-450 (ethoxycoumarin O-deethylase) activity to 24 and 44% of control, respectively, and blunted hypoxia and angiotensin II-induced vasoconstriction. The depression of vascular contraction by 1-ABT was not due to an effect on calcium channels, since similar concentrations of 1-ABT had no inhibitory activity on electrical field-stimulated contractile response in rabbit papillary muscle strips. However, when 1-ABT was washed out of the lung after preincubation, the vascular reactivity to hypoxia and angiotensin II was restored despite persistent depression of lung cytochrome P-450 activity to 26% of control values. In isolated rat aortic and pulmonary arterial rings, addition of 1-ABT or metyrapone to the organ bath acutely reversed norepinephrine-induced contraction but preincubation with 1-ABT, metyrapone, or chloramphenicol had no effect on subsequent norepinephrine contractions. We conclude that 1-ABT inhibited lung vascular reactivity by a mechanism independent of cytochrome P-450 inhibition or calcium channel blockade and that an intact lung cytochrome P-450 system is not required for hypoxic pulmonary vasoconstriction in rat lungs.
肺细胞色素P - 450被认为在低氧性肺血管收缩中起作用。我们使用细胞色素P - 450的特异性自杀底物抑制剂1 -氨基苯并三唑(1 - ABT)和氯霉素重新检验了这一假说。在离体的、血液灌注的大鼠肺中,1 - ABT(0.5毫克/毫升)和氯霉素(1毫克/毫升)分别将肺微粒体细胞色素P - 450(乙氧香豆素O -脱乙基酶)活性抑制至对照的24%和44%,并减弱了低氧和血管紧张素II诱导的血管收缩。1 - ABT对血管收缩的抑制并非由于对钙通道的影响,因为相似浓度的1 - ABT对兔乳头肌条电场刺激的收缩反应无抑制活性。然而,预孵育后将1 - ABT从肺中洗脱,尽管肺细胞色素P - 450活性持续降低至对照值的26%,但对低氧和血管紧张素II的血管反应性得以恢复。在离体的大鼠主动脉和肺动脉环中,向器官浴槽中加入1 - ABT或甲吡酮可急性逆转去甲肾上腺素诱导的收缩,但用1 - ABT、甲吡酮或氯霉素预孵育对随后的去甲肾上腺素收缩无影响。我们得出结论,1 - ABT通过一种独立于细胞色素P - 450抑制或钙通道阻断之外的机制抑制肺血管反应性,并且大鼠肺的低氧性肺血管收缩并不需要完整的肺细胞色素P - 450系统。