Molecular docking studies of some benzoxazole and benzothiazole derivatives as VEGFR-2 target inhibitors: In silico design, MD simulation, pharmacokinetics and DFT studies

Sagiru Hamza Abdullahi , Abu Tayab Moin , Adamu Uzairu , Abdullahi Bello Umar , Muhammad Tukur Ibrahim , Mustapha Tijjani Usman , Nafisa Nawal , Imren Bayil , Talha Zubair
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Abstract

Breast cancer, a deadly disease among women, demands effective interventions due to its global impact, with over one million annual cases. Current anti-breast cancer drugs displays several side effects, also most patients resists to these drugs during early treatment stage. Hence, global search for better drugs with less side effects became necessary. The objective of this study is to identify potential inhibitors of vascular endothelial growth factor receptor-2 (VEGFR-2), a critical target in breast cancer treatment. Molecular docking-based virtual screening of 45 benzoxazole/thiazole derivatives was conducted, followed by molecular dynamics simulations to explore ligand-protein interactions. Seven ligands (compounds 7, 10, 12, 13, 14, 20, and 26) demonstrated superior binding affinities ranging from −157.85 to −173.88 ​kcal/mol (MolDock scores) and −109.96 to −129.23 ​kcal/mol (Re-rank scores) compared to Sorafenib (−156.35 ​kcal/mol MolDock score and −102.63 ​kcal/mol Re-rank score). Compound 7, identified as a potential hit, exhibited stability in a 100-ns dynamic simulation. It was chosen as a template for designing novel inhibitors, resulting in five compounds with improved binding affinities ranging from −177.84 to −184.69 ​kcal/mol (MolDock scores) and −137.34 to −143.44 ​kcal/mol (Re-rank scores). Pharmacological profiling confirmed the drug-like properties of both the potential hit molecules and the designed compounds, with 0–1 violations against Lipinski's rule of five and favorable pharmacokinetics status. Density functional theory (DFT) studies illustrated the reactive nature of the designed compounds. These findings suggest the potential of these molecules as novel VEGFR-2 inhibitors for breast cancer treatment, providing promising prospects for future drug development.

Abstract Image

作为 VEGFR-2 靶点抑制剂的一些苯并恶唑和苯并噻唑衍生物的分子对接研究:硅学设计、MD 模拟、药代动力学和 DFT 研究
乳腺癌是一种致命的女性疾病,每年发病人数超过 100 万,因此需要采取有效的干预措施。目前的抗乳腺癌药物有多种副作用,而且大多数患者在早期治疗阶段对这些药物产生抗药性。因此,有必要在全球范围内寻找副作用更小的更好药物。本研究的目的是找出潜在的血管内皮生长因子受体-2(VEGFR-2)抑制剂,它是乳腺癌治疗的关键靶点。研究人员对 45 种苯并恶唑/噻唑衍生物进行了基于分子对接的虚拟筛选,随后进行了分子动力学模拟,以探索配体与蛋白质之间的相互作用。与索拉非尼(-156.35 kcal/mol MolDock score和-102.63 kcal/mol Re-rank score)相比,7种配体(化合物7、10、12、13、14、20和26)表现出更优越的结合亲和力,范围在-157.85至-173.88 kcal/mol(MolDock score)和-109.96至-129.23 kcal/mol(Re-rank score)之间。被确定为潜在靶点的化合物 7 在 100-ns 动态模拟中表现出稳定性。该化合物被选为设计新型抑制剂的模板,最终产生了五种化合物,其结合亲和力得到了改善,范围从 -177.84 到 -184.69 kcal/mol(MolDock 得分)和 -137.34 到 -143.44 kcal/mol(Re-rank 得分)。药理分析证实,潜在的命中分子和设计化合物都具有类似药物的特性,违反利宾斯基五项规则的情况为 0-1 次,药代动力学状况良好。密度泛函理论(DFT)研究表明了所设计化合物的反应性质。这些发现表明,这些分子有可能成为治疗乳腺癌的新型 VEGFR-2 抑制剂,为未来的药物开发提供了广阔的前景。
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