Molecular docking , Synthesis and ADME Studies of New Pyrazoline Derivatives as Potential Anticancer Agents.

Ammar Wabdan, M. Mahdi, A. K. Khan
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引用次数: 2

Abstract

Cancer is a significant worldwide public health issue. The adverse effects of anticancer chemotherapies still compromise the quality of life of patients. To identify new potential targeted anticancer agents, a series of pyrazoline derivatives were synthesized and evaluated for anticancer effects on A549 (human lung adenocarcenoma cell line). In silico evaluation methods were done before synthesis through molecular docking via genetic optimization for ligand docking (GOLD) Suite software with EGFR tyrosine kinase and exhibited significant tyrosine kinase inhibition activities compared with Erlotinb as a reference drug due to their hydrogen bonding and short contact interaction with key amino acids and these results are compatible with the experimental findings. The new derivatives were synthesized by incorporating pyrazoline pharmacophore into nabumetone moiety as a starting molecule and the chalcone derivatives as intermediate products. The compounds structure were confirmed by 1H-NMR, some physicochemical properties and infrared spectroscopy. An in vitro assay demonstrated that the final compounds (P1, P2, P3 and P4) exerted potent to moderate cytotoxic activity in the micromolar range with an IC50 values (15.409μM, 7.24μM, 27.05μM, 22.45μM) respectively when compared with Erlotinib (IC50 =25.23μM) while (P5&P6) show weak activity. Pharmacokinetic and physicochemical properties of the final compounds predicted by using ADME evaluations. The results showed all the synthesized compounds have high oral bioavailability and good GI absorption.
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新型吡唑啉类抗癌药物的分子对接、合成及ADME研究。
癌症是一个重大的全球公共卫生问题。抗癌化疗的副作用仍然会影响患者的生活质量。为了寻找新的潜在的靶向抗癌药物,合成了一系列吡唑啉衍生物,并对A549(人肺腺癌细胞系)的抗癌作用进行了评价。在合成前通过遗传优化与EGFR酪氨酸激酶的配体对接(GOLD) Suite软件进行分子对接,进行硅评价方法,与Erlotinb作为对照药物相比,由于其与关键氨基酸的氢键和短接触相互作用,显示出显著的酪氨酸激酶抑制活性,这些结果与实验结果一致。以吡唑啉药效团为起始分子,以查尔酮衍生物为中间产物合成了新的衍生物。化合物的结构经1H-NMR、部分理化性质和红外光谱证实。体外实验表明,与厄洛替尼(IC50 =25.23μM)相比,最终化合物P1、P2、P3和P4在微摩尔范围内具有较强的细胞毒活性,IC50值分别为15.409μM、7.24μM、27.05μM、22.45μM,而p5和p6的IC50值较弱。用ADME评价预测最终化合物的药代动力学和理化性质。结果表明,所合成的化合物具有较高的口服生物利用度和良好的胃肠道吸收。
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