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首页> 外文期刊>Investigational new drugs. >Discovering simple phenylboronic acid and benzoxaborole derivatives for experimental oncology - phase cycle-specific inducers of apoptosis in A2780 ovarian cancer cells
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Discovering simple phenylboronic acid and benzoxaborole derivatives for experimental oncology - phase cycle-specific inducers of apoptosis in A2780 ovarian cancer cells

机译:用于在A2780卵巢癌细胞中发现简单的苯硼酸和实验性肿瘤学特异性细胞凋亡的特异性诱导剂

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摘要

Objective The aim of the study was to evaluate the antiproliferative potential of simple phenylboronic acid and benzoxaborole derivatives as well as to provide preliminary insight into their mode of action in cancer cells in vitro. Methods The antiproliferative activity was assessed in five diverse cancer cell lines via the SRB method (sulforhodamine B) or MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) method after 72 h of treatment. Further studies of the mechanism of action consisted of the influence of the compounds on cell cycle progression and apoptosis induction, which was assessed by flow cytometry, caspase-3 enzymatic activity, fluorescence microscopy and western blot analysis. Results A clear structure-activity relationship was observed for both groups of compounds with several representatives evaluated as highly active antiproliferative agents with low micromolar IC72_50~72h values. 2-Fluoro-6-formylphenylboronic acid (18) and 3-morpholino-5-fluorobenzoxaborole (27) exhibited strong cell cycle arrest induction in G_2/M associated with caspase-3 activation in an A2780 ovarian cancer cell line. These events were accompanied by a mitotic catastrophe cell morphology and an increased percentage of aneuploid and tetraploid cells. Further experiments indicated that the compounds were phase cycle-specific agents since cells co-treated with hydroxyurea were less sensitive. The observed cell cycle arrest resulted from significant p21 accumulation and was associated neither with cyclin B1 nor β-tubulin degradation. Conclusion Phenylboronic acid and benzoxaborole derivatives were found to be highly promising antiproliferative and proapoptotic compounds with a cell cycle-specific mode of action. The presented data support their candidacy for further studies as a novel class of potential anticancer agents.
机译:目的对该研究的目的是评估简单苯基硼酸和苯并氧杂烯酸衍生物的抗增殖潜力,以及在体外癌细胞的作用方式提供初步洞察。方法在72小时处理后,通过SRB方法(苏尔磺胺胺B)或MTT(3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑鎓溴化溴化溴化溴化溴化溴化铵)在5种不同的癌细胞系中评估抗增殖活性。进一步研究作用机制包括化合物对细胞周期进展和细胞凋亡诱导的影响,其通过流式细胞术,Caspase-3酶活性,荧光显微镜和Western印迹分析评估。结果对于具有低微摩尔IC72_50〜72H值的高活性抗增殖剂评估的两组化合物,观察到透明结构 - 活性关系。 2-氟-6-甲酰基苯基硼酸(18)和3-γ-5-氟苯氧基氧诺(27)在A2780卵巢癌细胞系中与Caspase-3激活相关的G_2 / m中的强细胞周期停滞诱导。这些事件伴有有丝分裂灾难细胞形态和增加的无倍性和四倍体细胞的百分比。进一步的实验表明,化合物是相循环特异性试剂,因为用羟基脲共同处理的细胞敏感。观察到的细胞周期骤停血由显着的P21积累产生,并且既不与细胞周期蛋白B1也没有β-管蛋白降解。结论苯硼酸和苯并氧基硼衍生物具有高度有前途的抗增殖和促凋亡化合物,具有细胞周期特异性作用模式。呈现的数据支持他们的候选资料,以进一步研究作为一种小型潜在的抗癌剂。

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