Gauthier Charles, Legault Jean, Lebrun Maxime, Dufour Philippe, Pichette André
Laboratoire LASEVE, Département des Sciences Fondamentales, UQAC, Chicoutimi, Québec, Canada G7H 2B1.
Bioorg Med Chem. 2006 Oct 1;14(19):6713-25. doi: 10.1016/j.bmc.2006.05.075. Epub 2006 Jun 19.
The weak hydrosolubility of betulinic acid (3) hampers the clinical development of this natural anticancer agent. In order to circumvent this problem and to enhance the pharmacological properties of betulinic acid (3) and the lupane-type triterpenes lupeol (1), betulin (2), and methyl betulinate (7), glycosides (beta-D-glucosides, alpha-L-rhamnosides, and alpha-D-arabinosides) were synthesized and in vitro tested for cytotoxicity against three cancerous (A-549, DLD-1, and B16-F1) and one healthy (WS1) cell lines. The addition of a sugar moiety at the C-3 or C-28 position of betulin (2) resulted in a loss of cytotoxicity. In contrast, the 3-O-beta-D-glucosidation of lupeol (1) improved the activity by 7- to 12-fold (IC50 14-15.0 microM). Moreover, the results showed that cancer cell lines are 8- to 12-fold more sensitive to the 3-O-alpha-L-rhamnopyranoside derivative of betulinic acid (IC50 2.6-3.9 microM, 22) than the healthy cells (IC50 31 microM). Thus, this study indicates that 3-O-glycosides of lupane-type triterpenoids represent an interesting class of potent in vitro cytotoxic agents.
桦木酸(3)的水溶性差阻碍了这种天然抗癌剂的临床开发。为了解决这个问题并增强桦木酸(3)以及羽扇豆烷型三萜类化合物羽扇豆醇(1)、桦木醇(2)和桦木酸甲酯(7)的药理特性,合成了糖苷(β -D-葡萄糖苷、α-L-鼠李糖苷和α-D-阿拉伯糖苷),并对其进行了体外测试,以检测其对三种癌细胞系(A-549、DLD-1和B16-F1)和一种健康细胞系(WS1)的细胞毒性。在桦木醇(2)的C-3或C-28位添加糖部分会导致细胞毒性丧失。相比之下,羽扇豆醇(1)的3-O-β-D-葡萄糖苷化使活性提高了7至12倍(IC50为14 - 15.0 microM)。此外,结果表明,癌细胞系对桦木酸的3-O-α-L-鼠李吡喃糖苷衍生物(IC50为2.6 - 3.9 microM,22)的敏感性比健康细胞(IC50为31 microM)高8至12倍。因此,本研究表明羽扇豆烷型三萜类化合物的3-O-糖苷是一类有趣的强效体外细胞毒性剂。