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首页> 外文期刊>Journal of Medicinal Chemistry >Design, synthesis, and SAR studies of 4-substituted methoxylbenzoyl-aryl- thiazoles analogues as potent and orally bioavailable anticancer agents
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Design, synthesis, and SAR studies of 4-substituted methoxylbenzoyl-aryl- thiazoles analogues as potent and orally bioavailable anticancer agents

机译:设计,合成和SAR研究的4-取代甲氧基苯甲酰基-芳基-噻唑类似物作为有效和口服生物利用的抗癌药

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In a continued effort to improve upon the previously published 4-substituted methoxybenzoyl-aryl-thiazole (SMART) template, we explored chemodiverse "B" rings and "B" to "C" ring linkage. Further, to overcome the poor aqueous solubility of this series of agents, we introduced polar and ionizable hydrophilic groups to obtain water-soluble compounds. For instance, based on in vivo pharmacokinetic (PK) studies, an orally bioavailable phenyl-amino-thiazole (PAT) template was designed and synthesized in which an amino linkage was inserted between "A" and "B" rings of compound 1. The PAT template maintained nanomolar (nM) range potency against cancer cell lines via inhibiting tubulin polymerization and was not susceptible to P-glycoprotein mediated multidrug resistance in vitro, and markedly improved solubility and bioavailability compared with the SMART template (45a-c (PAT) vs 1 (SMART)).
机译:为了不断改进先前发布的4-取代的甲氧基苯甲酰基-芳基-噻唑(SMART)模板,我们探索了化学多样性的“ B”环和“ B”至“ C”环的连接方式。此外,为了克服该系列试剂的不良水溶性,我们引入了极性和可电​​离的亲水基团来获得水溶性化合物。例如,基于体内药代动力学(PK)研究,设计并合成了可口服生物利用的苯基-氨基-噻唑(PAT)模板,其中在化合物1的“ A”和“ B”环之间插入了氨基键。 PAT模板通过抑制微管蛋白聚合来维持针对癌细胞系的纳摩尔(nM)范围效能,并且在体外不易受P-糖蛋白介导的多药耐药性的影响,与SMART模板相比,其溶解度和生物利用度显着提高(45a-c(PAT)与1(SMART))。

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