Stimler N P, O'Flaherty J T
Am J Pathol. 1983 Oct;113(1):75-84.
Platelet-activating factor (1-O-alkyl-2-O-acetyl-sn-glycero-3-phosphocholine; PAF) induces a specific, dose-dependent contraction of guinea pig lung parenchymal strips with an ED50 value of 10(-9) M. The smooth muscle contractile activity of PAF in this system was not effected by the H1-blocking antihistamine, pyrilamine (10(-6) M), the prostaglandin synthesis inhibitors, indomethacin (10(-5) M), aspirin (10(-4) M), or sulfinpyrazone (5 X 10(-4) M), the leukotriene synthesis inhibitor, nordihydroguaiaretic acid (NDGA; 10(-5) M), the leukotriene antagonist FPL 55712 (10(-6) M) or the inhibitor of arachidonic acid metabolism, eicosatetraynoic acid (ETYA; 2 X 10(-5) M). The role of platelets in this system was also investigated. PAF-mediated contractions were not attenuated following platelet depletion using nitrogen mustard, nor were they augmented by the addition of exogenous platelets. Furthermore, isolated platelets incubated with PAF did not release stable substances spasmogenic for lung parenchymal strips. Finally, contractile activity of PAF was demonstrated in lung parenchymal strips from rats, a species whose platelets are insensitive to PAF at elevated concentrations. Taken together, these data show that PAF contracts smooth muscle of guinea pig lung parenchyma independently of endogenous histamine, arachidonic acid metabolites, or platelets trapped within the pulmonary vasculature. It is concluded, therefore, that PAF may act directly on contractile cells of the lung.
血小板激活因子(1-O-烷基-2-O-乙酰基-sn-甘油-3-磷酸胆碱;PAF)可诱导豚鼠肺实质条产生特异性、剂量依赖性收缩,半数有效剂量(ED50)值为10^(-9) M。在该系统中,PAF的平滑肌收缩活性不受H1受体阻断型抗组胺药吡苄明(10^(-6) M)、前列腺素合成抑制剂吲哚美辛(10^(-5) M)、阿司匹林(10^(-4) M)或磺吡酮(5×10^(-4) M)、白三烯合成抑制剂去甲二氢愈创木酸(NDGA;10^(-5) M)、白三烯拮抗剂FPL 55712(10^(-6) M)或花生四烯酸代谢抑制剂二十碳四炔酸(ETYA;2×10^(-5) M)的影响。还研究了血小板在该系统中的作用。使用氮芥使血小板耗竭后,PAF介导的收缩并未减弱,添加外源性血小板也未增强这种收缩。此外,与PAF一起孵育的分离血小板并未释放对肺实质条有致痉作用的稳定物质。最后,在大鼠肺实质条中证实了PAF的收缩活性,大鼠的血小板在浓度升高时对PAF不敏感。综上所述,这些数据表明,PAF使豚鼠肺实质的平滑肌收缩,与内源性组胺、花生四烯酸代谢产物或肺血管内滞留的血小板无关。因此得出结论,PAF可能直接作用于肺的收缩细胞。