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Graph Theoretical Analysis, Insilico Modeling and Formulation of Pyrimidine Nanoparticles as p38α MAP Kinases inhibitors: A Quantitative Proteomics Approach

机译:曲线图理论分析,嘧啶纳米粒子的Insilico建模和制剂作为P38α地图激酶抑制剂:定量蛋白质组学方法

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In this study, the optimized 4-(4-hydroxybenzyl)-2-amino-6-hydroxypyrimidine-5-carboxamide derivative was formulated as nanoparticles to evaluate for their anticancer activity. The response surface methodology (RSM) was performed with utilization of Box-Behnken statistical design (BBSD) to optimize the experimental conditions for identification of significant synthetic methodology. To explore the stability of the derivative was done by density functional theory (DFT). Graph theoretical analysis was introduced to identify the drug target p38α MAP Kinases and then insilico modeling was performed to provide straightforward information for further structural optimization. The experimental results under optimal experimental conditions obtained 74.55–76% yield of 4-(4-hydroxybenzyl)-2-amino-6-hydroxypyrimidine-5-carboxamide, 127oC melting point and Rf value 0.59 were well matched with the predicted results and this was gaining 95% of confidence level and suitability of RSM. The spectral data were reliable with the assigned structures of synthetic yields. The formulated nanoparticles were exhibited a good anticancer activity against used cancer cell line MCF7. Amusingly the observed docking scores and in-vitro anticancer activity was proving the compound significance and potential as a potent p38α inhibitor. Further, we have elucidated the mechanism of action at its functional level using label-free quantitative proteomics. Interestingly the observed results were indicating that the derived proteomics data involving in the alteration process in cancer-related regulatory pathways.
机译:在本研究中,优化的4-(4-羟基苄基)-2-氨基-6-羟基丙氨酸-5-甲酰胺衍生物配制为纳米颗粒以评估它们的抗癌活性。响应面方法(RSM)是用Box-Behnken统计设计(BBSD)的利用来进行的,以优化实验条件,以识别显着的合成方法。为了探讨衍生物的稳定性是通过密度泛函理论(DFT)完成的。引入图表理论分析以鉴定药物靶标p38α映射激酶,然后进行Insilico建模,以提供进一步的结构优化的直接信息。在最佳实验条件下获得的实验结果为74.55-76%的4--(4-羟基苄基)-2-氨基-6-羟基吡啶氨酸-5-甲酰胺,127oC熔点和RF值0.59与预测结果很好地匹配获得了95%的置信水平和RSM的适用性。光谱数据可靠,合成产率的分配结构是可靠的。配制的纳米颗粒对二手癌细胞系MCF7表现出良好的抗癌活性。有趣地观察到的对接分数和体外抗癌活性是证明了化合物的意义和潜力作为有效的P38α抑制剂。此外,我们利用无标记的定量蛋白质组学阐明了其功能水平的作用机制。有趣的是,观察结果表明,衍生的蛋白质组学数据涉及在癌症相关的调节途径中的改变过程中。

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