Clark M T, Chang J, Navran S S, Mukhopadhyay A, Amin H, Feller D R, Miller D D
J Med Chem. 1986 Feb;29(2):181-5. doi: 10.1021/jm00152a003.
The synthesis and biological evaluation of 7,8-dihydroxy (2) and 7,8-methylenedioxy (3) analogues of 1-[(3,4,5-trimethyoxyphenyl)methyl]-2,3,4,5-tetradhyo-1H-2-b enzazepine on beta-adrenoceptor systems and human platelets were undertaken and compared with trimetoquinol (TMQ, 1). Whereas 1 is a potent beta-adrenoceptor agonist in guinea pig atria and trachea (pD2 = 8.2), analogue 2 was marginally effective at relaxing guinea pig tracheal smooth muscle (pD2 = 4.4) and inactive as an agonist on guinea pig atria. Analogues 2 and 3 were inhibitors of phospholipase C (PLC; from Clostridium perfringens) induced and secondary wave of ADP-induced aggregation responses and inactive against low-dose thrombin-induced or stable endoperoxide (U46619) induced human platelet aggregation. Against ADP-induced serotonin secretion, 3 was 9-fold more active than analogue 2. Further, the rank order of TMQ isomers and 3 as inhibitors of PLC-induced platelet aggregation, serotonin secretion, and phosphatidylinositol degradation was identical (3 greater than (S)-(-)-1 greater than (R)-(+)-1). The results suggest that these compounds are blocking the action of PLC by interfering with phosphatidylinositol turnover in platelet membranes. The inhibition of ADP-induced responses in human platelets by analogues 2 and 3 also suggests a site of inhibition at a level of arachidonic acid release. Thus, ring expansion of 1 as in the benzazepine analogues 2 and 3 has allowed us to develop selective inhibitors of platelet function that lack significant beta-adrenoceptor activity.
开展了1-[(3,4,5-三甲氧基苯基)甲基]-2,3,4,5-四氢-1H-2-苯并氮杂䓬的7,8-二羟基类似物(2)和7,8-亚甲二氧基类似物(3)对β-肾上腺素受体系统和人血小板的合成及生物学评价,并与曲美喹诺(TMQ,1)进行比较。1在豚鼠心房和气管中是一种强效β-肾上腺素受体激动剂(pD2 = 8.2),而类似物2在舒张豚鼠气管平滑肌方面效果微弱(pD2 = 4.4),对豚鼠心房无激动剂活性。类似物2和3是磷脂酶C(来自产气荚膜梭菌)诱导的以及ADP诱导的聚集反应次级波的抑制剂,对低剂量凝血酶诱导的或稳定内过氧化物(U46619)诱导的人血小板聚集无活性。对于ADP诱导的5-羟色胺分泌,3的活性比类似物2高9倍。此外,TMQ异构体和3作为PLC诱导的血小板聚集、5-羟色胺分泌及磷脂酰肌醇降解抑制剂的活性排序相同(3>(S)-(-)-1>(R)-(+)-1)。结果表明这些化合物通过干扰血小板膜中磷脂酰肌醇的周转来阻断PLC的作用。类似物2和3对人血小板中ADP诱导反应的抑制也表明在花生四烯酸释放水平存在一个抑制位点。因此,如苯并氮杂䓬类似物2和3中1的环扩展使我们能够开发出缺乏显著β-肾上腺素受体活性的血小板功能选择性抑制剂。