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Synthesis and Biological Evaluation of 2-Methyl-4,5-Disubstituted Oxazoles as a Novel Class of Highly Potent Antitubulin Agents

机译:一类新型的高效抗微管蛋白药物2-甲基-4,5-二取代的恶唑的合成与生物评价

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摘要

Antimitotic agents that interfere with microtubule formation are one of the major classes of cytotoxic drugs for cancer treatment. Multiple 2-methyl-4-(3′,4′,5′-trimethoxyphenyl)-5-substituted oxazoles and their related 4-substituted-5-(3′,4′,5′-trimethoxyphenyl) regioisomeric derivatives designed as cis-constrained combretastatin A-4 (CA-4) analogues were synthesized and evaluated for their antiproliferative activity in vitro against a panel of cancer cell lines and, for selected highly active compounds, interaction with tubulin, cell cycle effects and in vivo potency. Both these series of compounds were characterized by the presence of a common 3′,4′,5′-trimethoxyphenyl ring at either the C-4 or C-5 position of the 2-methyloxazole ring. Compounds 4g and 4i, bearing a m-fluoro-p-methoxyphenyl or p-ethoxyphenyl moiety at the 5-position of 2-methyloxazole nucleus, respectively, exhibited the greatest antiproliferative activity, with IC50 values of 0.35-4.6 nM (4g) and 0.5–20.2 nM (4i), which are similar to those obtained with CA-4. These compounds bound to the colchicine site of tubulin and inhibited tubulin polymerization at submicromolar concentrations. Furthermore, 4i strongly induced apoptosis that follows the mitochondrial pathway. In vivo, 4i in a mouse syngeneic model demonstrated high antitumor activity which significantly reduced the tumor mass at doses ten times lower than that required for CA-4P, suggesting that 4i warrants further evaluation as a potential anticancer drug.
机译:干扰微管形成的抗有丝分裂剂是用于癌症治疗的主要细胞毒性药物之一。设计为顺式的多个2-甲基-4-(3',4',5'-三甲氧基苯基)-5-取代的恶唑及其相关的4-取代的-5-(3',4',5'-三甲氧基苯基)区域异构体衍生物合成了受约束的康布雷他汀A-4(CA-4)类似物,并评估了它们在体外对一组癌细胞系的抗增殖活性,以及​​对于选定的高活性化合物与微管蛋白的相互作用,细胞周期效应和体内效力。这两个系列的化合物的特征在于在2-甲基恶唑环的C-4或C-5位置上存在共同的3',4',5'-三甲氧基苯基环。化合物4g和4i分别在2-甲基恶唑核的5位带有m-氟-对甲氧基苯基或对乙氧基苯基部分,表现出最大的抗增殖活性,IC50值为0.35-4.6 nM(4g), 0.5–20.2 nM(4i),与使用CA-4获得的结果相似。这些化合物与微管蛋白的秋水仙碱位点结合,并在亚微摩尔浓度下抑制微管蛋白的聚合。此外,4i强烈诱导遵循线粒体途径的凋亡。在体内,小鼠同基因模型中的4i表现出很高的抗肿瘤活性,以比CA-4P所需的剂量低十倍的剂量显着降低了肿瘤块,这表明4i作为潜在的抗癌药物值得进一步评估。

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