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In vitro assessment of a computer-designed potential anticancer agent in cervical cancer cells

机译:电脑评估宫颈癌细胞中潜在抗癌药的体外评估

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Computer-based technology is becoming increasingly essential in biological research where drug discovery programs start with the identification of suitable drug targets. 2-Methoxyestradiol (2ME2) is a 17β-estradiol metabolite that induces apoptosis in various cancer cell lines including cervical cancer, breast cancer and multiple myeloma. Owing to 2ME2’s poor in vivo bioavailability, our laboratory in silico-designed and subsequently synthesized a novel 2ME2 analogue, 2-ethyl-3-O-sulphamoyl-estra-1,3,5(10),15-tetraen-17-ol (ESE-15-ol), using receptor- and ligand molecular modeling. In this study, the biological effects of ESE-15-ol (180?nM) and its parent molecule, 2ME2 (1?μM), were assessed on morphology and apoptosis induction in cervical cancer cells. Transmission electron microscopy, scanning electron microscopy and polarization-optical transmitted light differential interference contrast (PlasDIC) images demonstrated morphological hallmarks of apoptosis including apoptotic bodies, shrunken cells, vacuoles, reduced cell density and cell debris. Flow cytometry analysis showed apoptosis induction by means of annexin V-FITC staining. Cell cycle analysis showed that ESE-15-ol exposure resulted in a statistically significant increase in the G2M phase (72%) compared to 2ME2 (19%). Apoptosis induction was more pronounced when cells were exposed to ESE-15-ol compared to 2ME2. Spectrophotometric analysis of caspase 8 activity demonstrated that 2ME2 and ESE-15-ol both induced caspase 8 activation by 2- and 1.7-fold respectively indicating the induction of the apoptosis. However, ESE-15-ol exerted all of the above-mentioned effects at a much lower pharmacological concentration (180?nM) compared to 2ME2 (1?μM physiological concentration). Computer-based technology is essential in drug discovery and together with in vitro studies for the evaluation of these in silico-designed compounds, drug development can be improved to be cost effective and time consuming. This study evaluated the anticancer potential of ESE-15-ol, an in silico-designed compound in vitro. Research demonstrated that ESE-15-ol exerts antiproliferative activity accompanied with apoptosis induction at a nanomolar concentration compared to the micromolar range required by 2ME2. This study is the first study to demonstrate the influence of ESE-15-ol on morphology, cell cycle progression and apoptosis induction in HeLa cells. In silico-design by means of receptor- and ligand molecular modeling is thus effective in improving compound bioavailability while preserving apoptotic activity in vitro.
机译:基于计算机的技术在生物学研究中变得越来越重要,在该领域中,药物发现计划始于确定合适的药物靶标。 2-甲氧基雌二醇(2ME2)是一种17β-雌二醇代谢产物,可诱导各种癌细胞系(包括宫颈癌,乳腺癌和多发性骨髓瘤)的凋亡。由于2ME2的体内生物利用度差,我们的实验室通过计算机设计并随后合成了新型2ME2类似物2-乙基-3-O-磺酰基-雌激素-1,3,5(10),15-丁烯17-醇(ESE-15-ol),使用受体和配体分子建模。在这项研究中,评估了ESE-15-ol(180?nM)及其母体分子2ME2(1?μM)对宫颈癌细胞形态和凋亡诱导的生物学作用。透射电子显微镜,扫描电子显微镜和偏振光透射光微分干涉对比(PlasDIC)图像显示出凋亡的形态学特征,包括凋亡小体,收缩的细胞,液泡,减少的细胞密度和细胞碎片。流式细胞仪分析显示通过膜联蛋白V-FITC染色诱导细胞凋亡。细胞周期分析表明,与2ME2(19%)相比,ESE-15-ol暴露导致G2M期(72%)有统计学显着增加。与2ME2相比,当细胞暴露于ESE-15-ol时,凋亡诱导更为明显。分光光度法分析caspase 8的活性,表明2ME2和ESE-15-ol分别以2倍和1.7倍诱导caspase 8的活化,表明细胞凋亡的诱导。然而,与2ME2(1?μM生理浓度)相比,ESE-15-ol在低得多的药理浓度(180?nM)下发挥了所有上述作用。基于计算机的技术对于药物发现至关重要,并且与用于评估这些计算机设计的化合物的体外研究一起,可以改善药物开发的成本效益和时间消耗。这项研究评估了ESE-15-ol(一种计算机设计的体外化合物)的抗癌潜力。研究表明,与2ME2所需的微摩尔范围相比,ESE-15-ol在纳摩尔浓度下具有抗增殖活性,并诱导细胞凋亡。这项研究是第一个证明ESE-15-ol对HeLa细胞形态,细胞周期进程和凋亡诱导的影响的研究。因此,在计算机设计中,通过受体和配体的分子建模可有效提高化合物的生物利用度,同时保留体外的凋亡活性。

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