LIMAS Laboratory, Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah University, Fez, Morocco.
Anticancer Drugs. 2024 Feb 1;35(2):117-128. doi: 10.1097/CAD.0000000000001492. Epub 2023 Nov 29.
Modeling the structural properties of novel morpholine-bearing 1, 5-diaryl-diazole derivatives as potent COX-2 inhibitor, two proposed models based on CoMFA and CoMSIA were evaluated by external and internal validation methods. Partial least squares analysis produced statistically significant models with Q 2 values of 0.668 and 0.652 for CoMFA and CoMSIA, respectively, and also a significant non-validated correlation coefficient R² with values of 0.882 and 0.878 for CoMFA and CoMSIA, respectively. Both models met the requirements of Golbraikh and Tropsha, which means that both models are consistent with all validation techniques. Analysis of the CoMFA and CoMSIA contribution maps and molecular docking revealed that the R1 substituent has a very significant effect on their biological activity. The most active molecules were evaluated for their thermodynamic stability by performing MD simulations for 100 ns; it was revealed that the designed macromolecular ligand complex with 3LN1 protein exhibits a high degree of structural and conformational stability. Based on these results, we predicted newly designed compounds, which have acceptable oral bioavailability properties and would have high synthetic accessibility.
作为一种有效的 COX-2 抑制剂,我们构建了两个基于 CoMFA 和 CoMSIA 的新型吗啉取代的 1,5-二芳基-1H-吡唑衍生物的结构性质模型。通过外部和内部验证方法对这两个模型进行了评估。偏最小二乘分析产生了具有统计学意义的模型,CoMFA 和 CoMSIA 的 Q 2 值分别为 0.668 和 0.652,并且 CoMFA 和 CoMSIA 的非验证相关系数 R²值分别为 0.882 和 0.878。这两个模型都符合 Golbraikh 和 Tropsha 的要求,这意味着这两个模型都符合所有验证技术的要求。CoMFA 和 CoMSIA 贡献图和分子对接分析表明,R1 取代基对其生物活性有非常显著的影响。对最活跃的分子进行了 100 ns 的 MD 模拟,以评估它们的热力学稳定性;结果表明,设计的与 3LN1 蛋白的大分子配体复合物具有高度的结构和构象稳定性。基于这些结果,我们预测了新设计的化合物,它们具有可接受的口服生物利用度性质,并且具有很高的合成可及性。