iMed.UL, Faculty of Pharmacy, University of Lisbon, Av. das Forças Armadas, 1600-083 Lisbon, Portugal.
Bioorg Med Chem. 2009 Oct 1;17(19):6942-51. doi: 10.1016/j.bmc.2009.08.020. Epub 2009 Aug 15.
The novel cucurbitacins, balsaminagenin A and B (1-2) and balsaminoside A (3) and the know cucurbitacin karavelagenin C (4), together with five new mono or diacylated derivatives (5-9) of karavelagenin C were evaluated for multidrug resistance reversing activity on human MDR1 gene transfected mouse lymphoma cells. Compounds 2-6 exhibited a strong activity compared with that of the positive control, verapamil. Structure-activity relationships are discussed. Moreover, in the checkerboard model of combination chemotherapy, the interaction between doxorubicin and compounds 2-5 synergistically enhanced the effect of the anticancer drug. Compounds 1-4 were isolated from the aerial parts of Momordica balsamina L. The structures of the compounds were established on the basis of spectroscopic methods including 2D NMR experiments (COSY, HMQC, HMBC and NOESY).
从苦瓜属植物苦瓜 Momordica balsamina L. 的地上部分分离得到了 novel cucurbitacins(1-2)、 balsaminagenin A 和 B(1-2)、 balsaminoside A(3)和已知的 cucurbitacin karavelagenin C(4),以及 cucurbitacin karavelagenin C 的五个新的单或二酰化衍生物(5-9)。对这些化合物进行了人 MDR1 基因转染的鼠淋巴瘤细胞的多药耐药逆转活性评价。与阳性对照维拉帕米相比,化合物 2-6 表现出很强的活性。讨论了结构-活性关系。此外,在联合化疗的棋盘模型中,阿霉素与化合物 2-5 之间的相互作用协同增强了抗癌药物的效果。化合物 1-4 从苦瓜 Momordica balsamina L. 的地上部分中分离得到。根据包括 2D NMR 实验(COSY、HMQC、HMBC 和 NOESY)在内的光谱方法确定了这些化合物的结构。