Fuchino Hiroyuki, Kawano Marii, Mori-Yasumoto Kanami, Sekita Setsuko, Satake Motoyoshi, Ishikawa Tsutomu, Kiuchi Fumiyuki, Kawahara Nobuo
Research Center for Medicinal Plant Resources, National Institute of Biomedical Innovation, 1-2 Hachimandai, Tsukuba, Ibaraki, Japan.
Chem Pharm Bull (Tokyo). 2010 Aug;58(8):1047-50. doi: 10.1248/cpb.58.1047.
Leishmanicidal activities of benzophenanthridine alkaloids isolated from fruits of Bocconia pearcei and their derivatives were examined. Seven benzophenanthridine compounds were isolated from the methanolic extracts of B. pearcei. Among them, dihydrosanguinarine showed the most potent leishmanicidal activities (IC(50) value: 0.014 microg/ml, respectively). To examine the structure-activity relationship of the benzophenanthridine skeleton, the leishmanicidal activities for 32 synthetic samples were examined. The existence of bulky groups at the C(7)-C(8) position was found to enhance the activity. On the other hand, the bulkiness at the C(2)-C(3) position on the D-ring, a carbonyl group at C-6, substitution at C-6 and cleavage or saturation of the C(5)-C(6) bond reduced activity. A methyl group on nitrogen of the C-ring was thought to be necessary for significant activity.
对从博落回果实中分离得到的苯菲啶生物碱及其衍生物的杀利什曼原虫活性进行了研究。从博落回的甲醇提取物中分离出了七种苯菲啶化合物。其中,二氢血根碱表现出最强的杀利什曼原虫活性(IC50值分别为0.014微克/毫升)。为了研究苯菲啶骨架的构效关系,对32个合成样品的杀利什曼原虫活性进行了检测。发现C(7)-C(8)位存在庞大基团可增强活性。另一方面,D环上C(2)-C(3)位的庞大性、C-6位的羰基、C-6位的取代以及C(5)-C(6)键的断裂或饱和会降低活性。C环氮上的甲基被认为是产生显著活性所必需的。