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一系列去甲斑蝥素类似物的合成及抗癌活性研究。

Synthesis and anticancer activity of a series of norcantharidin analogues.

机构信息

Chemistry, Centre for Chemical Biology, School of Environmental & Life Sciences, University of Newcastle, University Drive, Callaghan NSW 2308, Australia.

出版信息

Eur J Med Chem. 2012 Aug;54:573-81. doi: 10.1016/j.ejmech.2012.06.010. Epub 2012 Jun 15.

Abstract

Cantharidin (1) and norcantharidin (2) display high levels of anticancer activity against a broad range of tumour cell lines. Synthetic manipulation of norcantharidin yields (3S,3aR,4S,7R,7aS)-3-hydroxyhexahydro-4,7-epoxyisobenzofuran-1(3H)-one (3), which also displays a high level of anticancer activity against tumour cells but interestingly, shows selectivity towards HT29 (colon; GI(50) = 14 μM) and SJ-G2 (glioblastoma; GI(50) = 15 μM) cell lines. Substitution at the hydroxyl group of the cyclic lactone within (3) produces a diasteromeric pair of products that have no difference in cytotoxicity over the cell lines tested. Incorporation of an isopropyl tail at this position (16) produced the most promising compound of this series to date, with strong selectivity towards HT29 (colon; GI(50) = 19 μM) and SJ-G2 (glioblastoma; GI(50) = 21 μM) cell lines but completely void of any activity against the remaining tumour cell lines (GI(50) > 100 μM), as per the parent molecule. We also discovered that the introduction of a terminal phosphate moiety (28) at the same position produced a different trend in cytotoxicity with strong activity in BE2-C (neuroblastoma; GI(50) = 9 μM) cells; suggestive of an alternate mode of action.

摘要

斑蝥素(1)和去甲斑蝥素(2)对广泛的肿瘤细胞系表现出高抗癌活性。对去甲斑蝥素进行合成操作得到(3S,3aR,4S,7R,7aS)-3-羟基六氢-4,7-环氧异苯并呋喃-1(3H)-酮(3),它对肿瘤细胞也表现出高抗癌活性,但有趣的是,对 HT29(结肠;GI(50) = 14 μM)和 SJ-G2(神经胶质瘤;GI(50) = 15 μM)细胞系具有选择性。在(3)中环状内酯中的羟基取代产生一对非对映异构体产物,在测试的细胞系中其细胞毒性没有差异。在该位置引入异丙基尾巴(16)产生了该系列迄今为止最有前途的化合物,对 HT29(结肠;GI(50) = 19 μM)和 SJ-G2(神经胶质瘤;GI(50) = 21 μM)细胞系具有很强的选择性,但对其余肿瘤细胞系(GI(50) > 100 μM)完全没有任何活性,与母体分子相同。我们还发现,在相同位置引入末端磷酸酯部分(28)会导致细胞毒性产生不同的趋势,对 BE2-C(神经母细胞瘤;GI(50) = 9 μM)细胞具有很强的活性;提示了一种替代作用模式。

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