首页> 美国卫生研究院文献>Molecules >Synthesis and Characterization of Some New Quinoxalin-2(1H)one and 2-Methyl-3H-quinazolin-4-one Derivatives Targeting the Onset and Progression of CRC with SRA Molecular Docking and ADMET Analyses
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Synthesis and Characterization of Some New Quinoxalin-2(1H)one and 2-Methyl-3H-quinazolin-4-one Derivatives Targeting the Onset and Progression of CRC with SRA Molecular Docking and ADMET Analyses

机译:一些新的喹啉-2(1H)一种和2-甲基-3H-喹唑啉-4-一种衍生物的合成与表征靶向CRC的发病和进展分子对接和备用探

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摘要

The pathogenesis of colorectal cancer is a multifactorial process. Dysbiosis and the overexpression of COX-2 and LDHA are important effectors in the initiation and development of the disease through chromosomal instability, PGE2 biosynthesis, and induction of the Warburg effect, respectively. Herein, we report the in vitro testing of some new quinoxalinone and quinazolinone Schiff’s bases as: antibacterial, COX-2 and LDHA inhibitors, and anticolorectal agents on HCT-116 and LoVo cells. Moreover, molecular docking and SAR analyses were performed to identify the structural features contributing to the biological activities. Among the synthesized molecules, the most active cytotoxic agent, (6d) was also a COX-2 inhibitor. In silico ADMET studies predicted that (6d) would have high Caco-2 permeability, and %HIA (99.58%), with low BBB permeability, zero hepatotoxicity, and zero risk of sudden cardiac arrest, or mutagenicity. Further, (6d) is not a potential P-gp substrate, instead, it is a possible P-gpI and II inhibitor, therefore, it can prevent or reverse the multidrug resistance of the anticancer drugs. Collectively, (6d) can be considered as a promising lead suitable for further optimization to develop anti-CRC agents or glycoproteins inhibitors.
机译:结肠直肠癌的发病机制是多因素过程。通过染色体不稳定性,PGE2生物合成,疾病,PGE2生物合成,以及Warburg效应的诱导,Cox-2和Ldha的过表达是疾病的起始和发展中的重要效果。在此,我们报告了一些新的喹喔啉酮和喹唑啉酮席基的体外测试,如:抗菌,COX-2和LDHA抑制剂,以及在HCT-116和Lovo细胞上的抗听性剂。此外,进行分子对接和SAR分析以确定有助于生物活性的结构特征。在合成的分子中,最活化的细胞毒性剂(6D)也是COX-2抑制剂。在基石呼吸研究中,预测(6D)将具有高Caco-2渗透率,%HIA(99.58%),具有低BBB渗透性,零肝毒性和突然心脏骤停的零风险,或突变性。此外,(6D)不是潜在的P-GP衬底,而是可能的P-GPI和II抑制剂,因此,它可以预防或逆转抗癌药物的多药抗性。统称(6D)可以被认为是适合于进一步优化以开发抗CRC药剂或糖蛋白抑制剂的有前途的铅。

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