Molecular Docking Studies and ADME Predictions on Synthesized Chalcone Compounds Targeting EGFR

Ö. Gündoğdu
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Abstract

In the present study, new chalcone derivatives (5a–5f) obtained from the condensation reaction of cuminaldehyde and acetophenone compounds containing different substituents were reported. Chemical characterization (1HNMR and 13CNMR analysis) and molecular docking studies of the synthesized compounds were performed against the epidermal growth factor receptor (EGFR) and reference drug (metachalcone). Erlotinib was used as the reference ligand. Compound 5 (-7.6 kcal mol-1), compound 6 (-7.38 kcal mol-1), and compound 7 (-7.44 kcal mol-1) were found to be the strongest inhibitors of EGFR when compared to Erlotinib (-7.0 kcal mol-1). In addition, an ADME estimation was made. It was determined that the synthesized compounds could be potent EGFR inhibitors compared to Erlotinib. Compounds 5-7 and the target protein showed a better binding affinity for EGFR than the reference compound (Erlotinib). The synthesized compounds can be potent inhibitors for EGFR-mutated cancers.
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靶向EGFR的合成查尔酮化合物的分子对接研究及ADME预测
本文报道了不同取代基的苯乙酮与茴香醛缩合反应得到新的查尔酮衍生物(5a-5f)。对合成的化合物进行了化学表征(1HNMR和13CNMR分析)和与表皮生长因子受体(EGFR)和对照药物(metachalcone)的分子对接研究。厄洛替尼作为参比配体。与厄洛替尼(-7.0 kcal mol-1)相比,化合物5 (-7.6 kcal mol-1)、化合物6 (-7.38 kcal mol-1)和化合物7 (-7.44 kcal mol-1)是最强的EGFR抑制剂。此外,还进行了ADME估计。与厄洛替尼相比,合成的化合物可能是有效的EGFR抑制剂。化合物5-7和靶蛋白比参比化合物(厄洛替尼)对EGFR具有更好的结合亲和力。合成的化合物可能是egfr突变癌症的有效抑制剂。
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