Marzo-Mas Ana, Falomir Eva, Murga Juan, Carda Miguel, Marco J Alberto
Depart. de Q. Inorgánica y Orgánica, Univ. Jaume I, E-12071, Castellón, Spain.
Depart. de Q. Inorgánica y Orgánica, Univ. Jaume I, E-12071, Castellón, Spain.
Eur J Med Chem. 2018 Apr 25;150:591-600. doi: 10.1016/j.ejmech.2018.03.019. Epub 2018 Mar 8.
Several colchicine analogues in which the N-acetyl residue has been replaced by haloacetyl, cyclohexylacetyl, phenylacetyl and various aroyl moieties have been synthesized. The cytotoxic activities of the synthesized compounds have been measured on three tumor cell lines (HT-29, MCF-7 and A549) and on one non-tumor cell line (HEK-293). These compounds exhibit high antiproliferative activities at the nanomolar level, in many cases with a higher potency than colchicine itself. Some of the compounds, particularly the haloacetyl derivatives, inhibit the polymerization of tubulin in a similar manner as colchicine. As regards the cell cycle, the most active compounds are the chlorobenzoyl and bromobenzoyl derivatives, which cause cell cycle arrest at the G2/M phase when tested at 20 nM, and the bromoacetyl derivative, which arrests the cell cycle at 15 nM. In addition, these colchicine derivatives have shown fairly active downregulating the expression of the c-Myc, hTERT and VEGF genes, as well as VEGF protein secretion, at very low concentrations.
已经合成了几种秋水仙碱类似物,其中N-乙酰基残基已被卤代乙酰基、环己基乙酰基、苯乙酰基和各种芳酰基部分取代。已在三种肿瘤细胞系(HT-29、MCF-7和A549)和一种非肿瘤细胞系(HEK-293)上测定了合成化合物的细胞毒性活性。这些化合物在纳摩尔水平上表现出高抗增殖活性,在许多情况下,其效力高于秋水仙碱本身。一些化合物,特别是卤代乙酰基衍生物,以与秋水仙碱类似的方式抑制微管蛋白的聚合。关于细胞周期,最具活性的化合物是氯苯甲酰基和溴苯甲酰基衍生物,当在20 nM下测试时,它们会导致细胞周期停滞在G2/M期,而溴代乙酰基衍生物在15 nM时会使细胞周期停滞。此外,这些秋水仙碱衍生物在非常低的浓度下就已显示出相当活跃地下调c-Myc、hTERT和VEGF基因的表达以及VEGF蛋白分泌的能力。