咪唑吡嗪化合物的设计、合成、抗癌评估和 In Silico 研究。

IF 2.3 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Gong Chen, Weiwei Li, Yuanhui Liu, Tong Li, Wenrun Zhu, Ying Liu, Xiaobao Jin, Qinghua Mei, Lianbao Ye
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引用次数: 0

摘要

本研究的重点是设计和合成新型咪唑吡嗪衍生物,通过CCK-8法研究它们对几种人类癌细胞株的增殖和迁移的影响,并通过反向分子对接法研究它们与JAKs的相互作用。结果发现,合成的大多数咪唑吡嗪衍生物对三种受试导师细胞都有很好的体外抑制作用。其中,三种化合物的 IC50 值远低于氟尿嘧啶,而对正常细胞 L-02 的毒性较低。迁移能力实验证明,A6 和 A9 能有效抑制肿瘤细胞的迁移。反向分子对接研究表明,这些衍生物的强效靶点是 JAKs,因为它们能以低能量很好地与激酶对接。这些发现表明,咪唑并[1,5-a]吡嗪衍生物可能是开发强效 JAK 靶向抗癌候选化合物的先导化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, Synthesis, Anticancer Evaluation and In Silico Studies of Imidazole Pyrazine Compounds.

The present study focused on design and synthesis novel imidazolopyrazine derivatives, investigate the effect of them on the proliferation and migration of several human cancer cell lines by CCK-8 method, and interactions with the JAKs by reverse molecular docking. It was found that most of the synthesized imidazolopyrazin derivatives exhibited excellent inhibitory effects towards three tested tutor cells in vitro. Among them, three compounds have IC50 values much lower than Fluorouracil while show low toxicity to normal cells L-02. The migration ability assay have proved that A6 and A9 effectively inhibit the migration of tumor cells. Reverse molecular docking studies indicated that the potent targets of these derivatives are JAKs as they well docked into kinases with low energy. These finding suggest that imidazo[1,5-a]pyrazin derivatives may be lead compounds for developing potent JAK targeted anticancer candidates.

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来源期刊
Chemistry & Biodiversity
Chemistry & Biodiversity 环境科学-化学综合
CiteScore
3.40
自引率
10.30%
发文量
475
审稿时长
2.6 months
期刊介绍: Chemistry & Biodiversity serves as a high-quality publishing forum covering a wide range of biorelevant topics for a truly international audience. This journal publishes both field-specific and interdisciplinary contributions on all aspects of biologically relevant chemistry research in the form of full-length original papers, short communications, invited reviews, and commentaries. It covers all research fields straddling the border between the chemical and biological sciences, with the ultimate goal of broadening our understanding of how nature works at a molecular level. Since 2017, Chemistry & Biodiversity is published in an online-only format.
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