Johnson Marlie, Younglove Brent, Lee Lauren, LeBlanc Regan, Holt Herman, Hills Patrice, Mackay Hilary, Brown Toni, Mooberry Susan L, Lee Moses
Department of Chemistry, Division of Natural and Applied Sciences, Hope College, MI 49423, USA.
Bioorg Med Chem Lett. 2007 Nov 1;17(21):5897-901. doi: 10.1016/j.bmcl.2007.07.105. Epub 2007 Aug 26.
Fourteen N-acetylated and non-acetylated 3,4,5-tri- or 2,5-dimethoxypyrazoline analogs of combretastatin-A4 (1) were synthesized. A non-acetylated derivative (5a) with the same substituents as CA-4 (1) was the most active compound in the series, with IC(50) values of 2.1 and 0.5 microM in B16 and L1210 cell lines, respectively. In contrast, a similar compound with an acetyl group at N1 of the pyrazoline ring (6g) showed poor activity in the cell lines studied. A cell-based assay indicated that compound 5a caused extensive microtubule depolymerization with an EC(50) value of 7.1 microM in A-10 cells while no activity was seen with the acetylated compound. Molecular modeling studies showed that these compounds possess a twisted conformation similar to CA-4 (1).
合成了14种柯里拉京-A4(1)的N-乙酰化和非乙酰化的3,4,5-三或2,5-二甲氧基吡唑啉类似物。一种与CA-4(1)具有相同取代基的非乙酰化衍生物(5a)是该系列中活性最高的化合物,在B16和L1210细胞系中的IC50值分别为2.1和0.5微摩尔。相比之下,在吡唑啉环的N1处带有乙酰基的类似化合物(6g)在所研究的细胞系中活性较差。基于细胞的分析表明,化合物5a在A-10细胞中导致广泛的微管解聚,EC50值为7.1微摩尔,而乙酰化化合物没有活性。分子模拟研究表明,这些化合物具有与CA-4(1)相似的扭曲构象。