Coy Barrera Carlos Andres, Coy Barrera Ericsson David, Granados Falla Diana Susana, Delgado Murcia Gabriela, Cuca Suarez Luis Enrique
Universidad Nacional de Colombia, Facultad de Ciencias, Departamento de Química, Laboratorio de Investigación en Productos Naturales Vegetales, Ciudad Universitaria, Bogotá D.C., Colombia.
Chem Pharm Bull (Tokyo). 2011;59(7):855-9. doi: 10.1248/cpb.59.855.
A novel seco-limonoid, rel-(1S,5R,9S,7R,8S,9R,10S,11R,13S,14R,15R,17R)-11,19-dihydroxy-7-acetoxy-7-deoxoichangin (raputiolide) (1), and two novel quinolone alkaloids N-methyl-2-phenoxyquinolin-4(1H)-one (heptaphyllone A) (2) and 6-methylbenzofuro[2,3-b]quinolin-4(1H)-one (heptaphyllone B) (3), along with the known seco-limonoid ichangin (4), were isolated from Raputia heptaphylla PITTIER (Rutaceae) stem bark. Five known alkaloids, N-methyl-8-methoxyflindersine (5), skimmianine (6), kokusaginine (7), dictamnine (8) and flindersiamine (9), were also isolated from R. heptaphylla leaves. Their structures were established on the basis of full spectroscopic data interpretation supported by data from the pertinent literature. seco-Limonoid 1 configuration was determined by enhanced nuclear Overhauser effect spectroscopy (NOESY) experiments and density functional theory (DFT) molecular modeling. The antileishmanial effect of the isolated compounds was evaluated on Leishmania Viannia panamensis (promastigotes and amastigotes). Whereas alkaloids 2-3, 6-8 and limonoid 4 exhibited no significant parasitocide activity against internalized L. (V.) panamensis amastigotes, limonoid 1 and alkaloid 5 had leishmanicidal activity on intracellular amastigotes (EC₅₀: 8.7 µg/ml) and promastigotes (EC(50): 14.3 µg/ml), respectively.
从芸香科植物七叶拉普蒂亚(Raputia heptaphylla PITTIER)的茎皮中分离出一种新型的裂环柠檬苦素,rel-(1S,5R,9S,7R,8S,9R,10S,11R,13S,14R,15R,17R)-11,19-二羟基-7-乙酰氧基-7-脱氧宜昌橙素(拉普蒂内酯)(1),以及两种新型喹诺酮生物碱N-甲基-2-苯氧基喹啉-4(1H)-酮(七叶黄酮A)(2)和6-甲基苯并呋喃[2,3-b]喹啉-4(1H)-酮(七叶黄酮B)(3),同时还分离出了已知的裂环柠檬苦素宜昌橙素(4)。从七叶拉普蒂亚的叶子中还分离出了五种已知生物碱,N-甲基-8-甲氧基弗林德辛(5)、茵芋碱(6)、吴茱萸次碱(7)、白藓碱(8)和弗林德胺(9)。它们的结构是在充分的光谱数据解释基础上,并结合相关文献数据确定的。裂环柠檬苦素1的构型通过增强核Overhauser效应光谱(NOESY)实验和密度泛函理论(DFT)分子建模确定。对分离得到的化合物对巴拿马利什曼原虫(前鞭毛体和无鞭毛体)的抗利什曼原虫作用进行了评估。生物碱2-3、6-8和柠檬苦素4对内化的巴拿马利什曼原虫无鞭毛体没有显著的杀寄生虫活性,而柠檬苦素1和生物碱5分别对细胞内无鞭毛体(半数有效浓度:8.7 µg/ml)和前鞭毛体(半数有效浓度:14.3 µg/ml)具有杀利什曼原虫活性。