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利用螺环氧化吲哚实现双靶点DNA靶向/抑制细胞周期蛋白依赖性激酶2并同时减轻氧化应激以用于选择性非小细胞肺癌治疗;合成、评估及分子模拟研究

Exploiting spirooxindoles for dual DNA targeting/CDK2 inhibition and simultaneous mitigation of oxidative stress towards selective NSCLC therapy; synthesis, evaluation, and molecular modelling studies.

作者信息

Islam Mohammad Shahidul, Al-Jassas Refaah M, Al-Majid Abdullah Mohammed, Haukka Matti, Nafie Mohamed S, Abu-Serie Marwa M, Teleb Mohamed, El-Yazbi Amira, Alayyaf Abdul Majeed Abdullah, Barakat Assem, Shaaban Marwa M

机构信息

Department of Chemistry, College of Science, King Saud University P. O. Box 2455 Riyadh 11451 Saudi Arabia

Department of Chemistry, University of Jyväskylä P.O. Box 35 FI-40014 Jyväskylä Finland

出版信息

RSC Med Chem. 2024 Jul 11;15(8):2937-2958. doi: 10.1039/d4md00337c. eCollection 2024 Aug 14.

Abstract

The unique structure of spirooxindoles and their ability to feature various pharmacophoric motifs render them privileged scaffolds for tailoring new multitarget anticancer agents. Herein, a stereoselective multicomponent reaction was utilized to generate a small combinatorial library of pyrazole-tethered spirooxindoles targeting DNA and CDK2 with free radical scavenging potential as an extra bonus. The designed spirooxindoles were directed to combat NSCLC inducing apoptosis and alleviating oxidative stress. The series' absolute configuration was assigned by X-ray diffraction analysis. Cytotoxicity screening of the developed spirooxindoles against NSCLC A549 and H460 cells compared to normal lung fibroblasts Wi-38 revealed the sensitivity of A549 cells to the compounds and raised 6e and 6h as the study hits (IC ∼ 0.09 μM and SI > 3). They damaged DNA at 24.6 and 35.3 nM, and surpassed roscovitine as CDK2 inhibitors (IC = 75.6 and 80.2 nM). Docking and MDs simulations postulated their receptors binding modes. The most potent derivative, 6e, induced A549 apoptosis by 40.85% arresting cell cycle at G2/M phase, and exhibited antioxidant activity in a dose-dependent manner compared to Trolox as indicated by DPPH scavenging assay. Finally, ADMET analysis predicted the drug-likeness properties of 6e.

摘要

螺环氧化吲哚独特的结构及其具有多种药效基团的能力,使其成为定制新型多靶点抗癌药物的优势骨架。在此,利用立体选择性多组分反应生成了一个小的组合库,该库包含以DNA和CDK2为靶点的吡唑连接的螺环氧化吲哚,并且还具有自由基清除潜力这一额外优势。所设计的螺环氧化吲哚旨在对抗非小细胞肺癌(NSCLC),诱导细胞凋亡并减轻氧化应激。通过X射线衍射分析确定了该系列化合物的绝对构型。将所开发的螺环氧化吲哚对非小细胞肺癌A549和H460细胞以及正常肺成纤维细胞Wi-38进行细胞毒性筛选,结果显示A549细胞对这些化合物敏感,并确定6e和6h为研究中的活性化合物(IC∼0.09 μM,SI>3)。它们在24.6和35.3 nM时可损伤DNA,并且作为CDK2抑制剂其活性超过了roscovitine(IC = 75.6和80.2 nM)。对接和分子动力学模拟推测了它们与受体的结合模式。最有效的衍生物6e可诱导A549细胞凋亡40.85%,使细胞周期停滞在G2/M期,并且通过DPPH清除试验表明,与Trolox相比,其具有剂量依赖性的抗氧化活性。最后,ADMET分析预测了6e的类药性质。

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