设计和合成吉非替尼衍生物作为潜在的癌症治疗药物:抗增殖活性、分子对接和ADMET预测

Yunlong Lu, Xiaoyan Ma, Min Shan
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摘要

非小细胞肺癌是世界范围内最常见的癌症之一,靶向化疗已成为一种主要的治疗方法。吉非替尼是一种口服酪氨酸激酶抑制剂,是研究最广泛的非小细胞肺癌靶向药物。但吉非替尼不可避免地产生获得性耐药,导致治疗失败。通过对吉非替尼的结构进行修饰,设计合成了一类新的含4-苯胺喹啉先导结构的化合物。这些化合物有望发挥更好的抗癌活性,更好地结合EGFR-TK结构域,丰富4-苯胺喹啉衍生物的结构,并激发进一步的结构修饰。采用MTT法测定了9种衍生物在3种癌细胞系(A549、PC9和HepG2)中的抗增殖活性。预测了所有化合物的ADMET谱,并通过Schrödinger预测了化合物(5和6)与EGFR的结合亲和力。此外,我们还研究了这些化合物(3-6)诱导HepG2细胞凋亡的作用。化合物3、5、6和9对A549对吉非替尼具有较强的抗增殖活性(IC50 = 12.64±3.59 μM),其中化合物5的IC50 = 7.39±1.24 μM)最强。此外,化合物(3-6)诱导HepG2细胞凋亡的能力明显优于吉非替尼。共合成了9个结构(化合物2 ~ 10)并对其进行了表征,其中化合物5的抗增殖活性最好。化合物3诱导HepG2细胞凋亡的能力最强。ADMET计算结果表明,化合物3具有更适合作为潜在候选药物的特性。
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Design and synthesis of gefitinib derivatives as potential drugs for cancer treatment: antiproliferative activity, molecular docking, and ADMET prediction
Non-small cell lung cancer is one of the most common cancers worldwide, and targeted chemotherapy has become a kind of the main treatment. Gefitinib, the most widely studied targeted agent in non-small cell lung cancer, is an orally active tyrosine kinase inhibitor. However, gefitinib inevitably generates acquired drug resistance, leading to treatment failure. A new class of compounds containing 4-anilinoquinazoline lead structure was designed and synthesized by modifying the structure of gefitinib. These compounds are expected to exert better anticancer activity and better binding to the EGFR-TK domain, enrich the structure of 4-anilinoquinazoline derivatives and inspire further structural modifications. The antiproliferative activity of nine derivatives was determined in three cancer cell lines (A549, PC9, and HepG2) using the MTT method. The ADMET profile of all compounds was predicted, and the binding affinity of the compounds (5 and 6) to EGFR was predicted by Schrödinger. In addition, the effect of these compounds (3-6) in inducing apoptosis in HepG2 cells was also studied. Four (3, 5, 6 and 9) of the newly synthesized derivatives exhibited superior antiproliferative activity against A549 to gefitinib (IC50 = 12.64 ± 3.59 μM), with compound 5 having the best activity (IC50 = 7.39 ± 1.24 μM). Moreover, the ability of compounds (3-6) to induce HepG2 cell apoptosis was significantly better than that of gefitinib. Nine structures (compounds 2-10) were synthesized and characterized, and compound 5 had the best antiproliferative activity. Compound 3 possessed the best ability to induce HepG2 apoptosis. Also, ADMET calculations were performed in silico, and the results revealed that compound 3 has more suitable characteristics as a potential drug candidate.
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