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新型(E)-N'-(3-烯丙基-2-羟基)亚苄基-2-(4-氧代喹唑啉-3(4H)-基)乙二酰腙类化合物的设计、合成与抗肿瘤活性评价。

Design, synthesis, and evaluation of novel (E)-N'-(3-allyl-2-hydroxy)benzylidene-2-(4-oxoquinazolin-3(4H)-yl)acetohydrazides as antitumor agents.

机构信息

Department of Pharmaceutical Chemistry, Hanoi University of Pharmacy, Hanoi, Vietnam.

College of Pharmacy, Chungbuk National University, Cheongju, Chungbuk, Republic of Korea.

出版信息

Arch Pharm (Weinheim). 2022 Jan;355(1):e2100216. doi: 10.1002/ardp.202100216. Epub 2021 Oct 21.

DOI:10.1002/ardp.202100216
PMID:34674294
Abstract

In our continuing search for novel small-molecule anticancer agents, we designed and synthesized a series of novel (E)-N'-(3-allyl-2-hydroxy)benzylidene-2-(4-oxoquinazolin-3(4H)-yl)acetohydrazides (5), focusing on the modification of substitution in the quinazolin-4(3H)-one moiety. The biological evaluation showed that all 13 designed and synthesized compounds displayed significant cytotoxicity against three human cancer cell lines (SW620, colon cancer; PC-3, prostate cancer; NCI-H23, lung cancer). The most potent compound 5l displayed cytotoxicity up to 213-fold more potent than 5-fluorouracil and 87-fold more potent than PAC-1, the first procaspase-activating compound. Structure-activity relationship analysis revealed that substitution of either electron-withdrawing or electron-releasing groups at positions 6 or 7 on the quinazolin-4(3H)-4-one moiety increased the cytotoxicity of the compounds, but substitution at position 6 seemed to be more favorable. In the caspase activation assay, compound 5l was found to activate the caspase activity by 291% in comparison to PAC-1, which was used as a control. Further docking simulation also revealed that this compound may be a potent allosteric inhibitor of procaspase-3 through chelation of the inhibitory zinc ion. Physicochemical and ADMET calculations for 5l provided useful information of its suitable absorption profile and some toxicological effects that need further optimization to be developed as a promising anticancer agent.

摘要

在我们持续寻找新型小分子抗癌药物的过程中,我们设计并合成了一系列新型(E)-N'-(3-烯丙基-2-羟基)苯亚甲基-2-(4-氧代喹唑啉-3(4H)-基)乙二酰肼(5),重点修饰喹唑啉-4(3H)-酮部分的取代基。生物评价显示,所有 13 个设计和合成的化合物对三种人癌细胞系(SW620、结肠癌;PC-3、前列腺癌;NCI-H23、肺癌)均显示出显著的细胞毒性。最有效的化合物 5l 的细胞毒性比 5-氟尿嘧啶高 213 倍,比第一个半胱天冬酶激活化合物 PAC-1 高 87 倍。构效关系分析表明,在喹唑啉-4(3H)-4-酮部分的 6 位或 7 位取代吸电子或供电子基团可提高化合物的细胞毒性,但 6 位取代似乎更有利。在半胱天冬酶激活测定中,与用作对照的 PAC-1 相比,化合物 5l 被发现可使半胱天冬酶活性激活 291%。进一步的对接模拟也表明,该化合物可能通过螯合抑制性锌离子而成为潜在的半胱天冬酶-3 的变构抑制剂。5l 的物理化学和 ADMET 计算为其适宜的吸收特性和一些需要进一步优化以开发为有前途的抗癌药物的毒理学效应提供了有用信息。

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