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Synthesis and Structure-Activity Relationships of a Series of Aporphine Derivatives with Antiarrhythmic Activities and Acute Toxicity

机译:一系列具有抗心律失常活性和急性毒性的阿芬吗啡衍生物的合成与构效关系

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摘要

Some aporphine alkaloids, such as crebanine, were found to present arrhythmic activity and also higher toxicity. A series of derivatives were synthesized by using three kinds of aporphine alkaloids (crebanine, isocorydine, and stephanine) as lead compounds. Chemical methods, including ring-opening reaction, bromination, methylation, acetylation, quaternization, and dehydrogenation, were adopted. Nineteen target derivatives were evaluated for their antiarrhythmic potential in the mouse model of ventricular fibrillation (VF), induced by CHCl3, and five of the derivatives were investigated further in the rat model of arrhythmia, induced by BaCl2. Meanwhile, preliminary structure-activity/toxicity relationship analyses were carried out. Significantly, N-acetamidesecocrebanine (>1d), three bromo-substituted products of crebanine (>2a, >2b, >2c), N-methylcrebanine (>2d), and dehydrostephanine (>4a) displayed antiarrhythmic effects in the CHCl3-induced model. Among them, 7.5 mg/kg of >2b was able to significantly reduce the incidence of VF induced by CHCl3 (p < 0.05), increase the number of rats that resumed sinus rhythm from arrhythmia, induced by BaCl2 (p < 0.01), and the number of rats that maintained sinus rhythm for more than 20 min (p < 0.01). Therefore, >2b showed remarkably higher antiarrhythmic activity and a lower toxicity (LD50 = 59.62 mg/kg, mice), simultaneously, indicating that >2b could be considered as a promising candidate in the treatment of arrhythmia. Structural-activity analysis suggested that variationsin antiarrhythmic efficacy and toxicity of aporphines were related to the C-1,C-2-methylenedioxy group on ring A, restricted ring B structural conformation, N-quaternization of ring B, levoduction of 6a in ring C, and the 8-, 9-, 10-methoxy groups on ring D on the skeleton.
机译:发现一些甲啡碱生物碱,例如克巴宁,具有心律不齐的活性,并且毒性更高。通过使用三种阿波啡碱(甲骨碱,异丁烯碱和Stephanine)作为先导化合物,合成了一系列衍生物。化学方法包括开环反应,溴化,甲基化,乙酰化,季铵化和脱氢。在CHCl3诱导的心室纤颤(VF)小鼠模型中评估了19种目标衍生物的抗心律失常潜力,在BaCl2诱导的心律不齐的大鼠模型中进一步研究了5种衍生物。同时,进行了初步的结构-活性/毒性关系分析。值得注意的是,N-乙酰胺secocrebanine(> 1d ),是Crbanine的三个溴取代产物(> 2a ,> 2b ,> 2c ),N-甲基crebanine(> 2d )和脱氢Stephanine(> 4a )在CHCl3诱导的模型中显示出抗心律失常作用。其中7.5 mg / kg的> 2b 能够显着降低CHCl3诱导的VF发生率(p <0.05),增加由BaCl2诱导的从心律失常恢复窦性心律的大鼠的数量( p <0.01),保持窦性心律超过20分钟的大鼠数量(p <0.01)。因此,> 2b 同时显示出明显更高的抗心律失常活性和较低的毒性(LD50 = 59.62 mg / kg,小鼠),这表明> 2b 可以被认为是有希望的候选药物。心律失常的治疗。结构活性分析表明,Aphiphines的抗心律失常功效和毒性的变化与A环上的C-1,C-2-亚甲基二氧基,受限的B环结构构象,B环的N季铵化,C环中的6a左化有关,以及骨架上环D上的8、9、10甲氧基。

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