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基于喹唑啉的衍生物作为VEGER-2抑制剂的设计、合成及细胞毒性评价:针对EGFR激酶活性、细胞凋亡诱导及分子对接研究的比较性研究

Design, synthesis, and cytotoxic evaluation of quinazoline-based derivatives as VEGER-2 inhibitors: comparative study against EGFR kinase activity, induction of apoptosis, and molecular docking study.

作者信息

Mabrouk Reda R, Musa Arafa, Saleh Al Ward Maged Mohammed, Hussein Shaimaa, Aljohani Ahmed K B, El-Zahabi Mohamed Ayman, Elwan Alaa

机构信息

Pharmaceutical Medicinal Chemistry& Drug Design Department, Faculty of Pharmacy (Boys), Al-Azhar University Cairo 11884 Egypt

Directorate of Health Affairs in Buhaira-Clinical Research Department, Ministry of Health and Population Damanhour 22511 Egypt.

出版信息

RSC Adv. 2025 Aug 21;15(36):29593-29612. doi: 10.1039/d5ra03829d. eCollection 2025 Aug 18.

Abstract

A novel series of quinazoline-based compounds were designed and synthesized as modified analogues to certain known VEGFR-2 inhibitors, as an extension of our work on the design and synthesis of new VEGFR-2 inhibitors. The anti-proliferative properties of the synthesized compounds were assessed against three tumor cell lines (MCF-7, HepG-2, and K-562). Compounds 8a (IC = 0.6955, 0.1871, 0.1884 μM), 8b (IC = 0.1908, 0.2242, 0.4642 μM), 8c (IC = 0.1875, 0.7344, 0.5444 μM), 8e (IC = 0.5523, 1.4357, 0.2664 μM), 9a (IC = 0.2824, 0.1871, 0.3858 μM), 9b (IC = 0.2090, 0.1944, 0.1902 μM), and 9d (IC = 0.2042, 0.3227, 2.2742 μM) showed the highest levels of the cytotoxic activity against the cell lines under investigation respectively, with IC values that were comparable to those of sorafenib (IC = 0.1283, 0.0844, 0.0606 μM). Next, the inhibitory action against VEGFR-2 kinase activity was also estimated for the synthesized compounds to confirm their mechanism of action to induce antiproliferative actions. The cytotoxicity and VEGFR-2 inhibition results were highly consistent, identifying compounds 8a (IC = 67.623, 74.864, 62.505 nM), 8b (IC = 80.740, 88.327, 78.668 nM), 9a (IC = 80.036, 85.240, 64.017 nM), 9b (IC = 19.320, 66.436, 43.052 nM), and 9d (IC = 47.042, 58.752, 80.182 nM) as top VEGFR-2 inhibitors comparing to sorafenib (IC = 87.993, 92.775, 95.735 nM). In addition, the implemented comparative study against EGFR kinase activity specifies the inhibition of VEGFR-2 kinase activity as the major mechanism correlated to the cytotoxic activity of the synthesized compounds. Furthermore, extra mechanistic studies were conducted for the synthesized compounds, including cell cycle analysis that revealed the ability of compounds 8a and 9b to arrest the HepG-2 cells at the sub-G1 phase while increasing the population of the cells to 96.3% for 8a and 94.68% for 9b in comparison to the control 68.12%. Additionally, the titled compounds caused a significant decrease in Bcl-2 expression levels, a significant increase in caspase-3, caspase-9, and BAX gene expression levels, and a suppression of TNF-α and IL-6R protein levels, indicating their significant apoptotic impact. Ultimately, the synthesized compounds' high affinity and proper binding manner inside the VEGFR-2 active site were demonstrated by molecular docking modeling.

摘要

设计并合成了一系列新型喹唑啉类化合物,作为某些已知VEGFR-2抑制剂的修饰类似物,这是我们关于新型VEGFR-2抑制剂设计与合成工作的延伸。评估了合成化合物对三种肿瘤细胞系(MCF-7、HepG-2和K-562)的抗增殖特性。化合物8a(IC = 0.6955、0.1871、0.1884 μM)、8b(IC = 0.1908、0.2242、0.4642 μM)、8c(IC = 0.1875、0.7344、0.5444 μM)、8e(IC = 0.5523、1.4357、0.2664 μM)、9a(IC = 0.2824、0.1871、0.3858 μM)、9b(IC = 0.2090、0.1944、0.1902 μM)和9d(IC = 0.2042、0.3227、2.2742 μM)分别对所研究的细胞系表现出最高水平的细胞毒活性,其IC值与索拉非尼(IC = 0.1283、0.0844、0.0606 μM)相当。接下来,还评估了合成化合物对VEGFR-2激酶活性的抑制作用,以确认其诱导抗增殖作用的作用机制。细胞毒性和VEGFR-2抑制结果高度一致,确定化合物8a(IC = 67.623、74.864、62.505 nM)、8b(IC = 80.740、88.327、78.668 nM)、9a(IC = 80.036、85.240、64.017 nM)、9b(IC = 19.320、66.436、43.052 nM)和9d(IC = 47.042、58.752、80.182 nM)为顶级VEGFR-2抑制剂,与索拉非尼(IC = 87.993、92.775、95.735 nM)相比。此外,针对EGFR激酶活性进行的比较研究表明,抑制VEGFR-2激酶活性是与合成化合物细胞毒活性相关的主要机制。此外,对合成化合物进行了额外的机制研究,包括细胞周期分析,结果显示化合物8a和9b能够使HepG-2细胞停滞在亚G1期,同时与对照的68.12%相比,8a使细胞群体增加到96.3%,9b使细胞群体增加到94.68%。此外,标题化合物导致Bcl-2表达水平显著降低,caspase-3、caspase-9和BAX基因表达水平显著升高,TNF-α和IL-6R蛋白水平受到抑制,表明它们具有显著的凋亡影响。最终,通过分子对接模型证明了合成化合物在VEGFR-2活性位点内具有高亲和力和合适的结合方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ca/12377202/6f1dc13c119f/d5ra03829d-f1.jpg

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