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新型酰腙卤代物的生物活性、诱导细胞凋亡和细胞周期阻滞。

Biological Activity, Apoptotic Induction and Cell Cycle Arrest of New Hydrazonoyl Halides Derivatives.

机构信息

Chemistry Department, Faculty of Science, Cairo University, Giza, Egypt.

Department of Chemistry, Faculty of Science and Arts, Khulais, University of Jeddah, Jeddah, Saudi Arabia.

出版信息

Anticancer Agents Med Chem. 2019;19(9):1141-1149. doi: 10.2174/1871520619666190306123658.

Abstract

BACKGROUND

The hydrazonoyl halides are presently an important target in the field of medicinal chemistry. The interest in the chemistry of hydrazonoyl halides is a consequence of the fact that they undergo a wide variety of reactions which provide routes to a myriad of both heterocyclic and acyclic compounds. In addition, they have diverse biological activities such as antiviral, anthelmintic, antiarthropodal, fungicidal, herbicidal, insecticidal, pesticidal, acaricidal and miticidal Activity correlated to the presence of hydrazonoyl halides. Moreover, many applications in both industrial and pharmaceutical fields have been found to be associated with these halides. Depending on the above facts and continuation to our work, we herein report on the evaluation of the anticancer activity of these two halides prepared according to the published work and trying to know their molecular mechanism that they proceed to stop proliferation and metastasis of tumor cells by molecular tools such as real time PCR using different apoptotic genes, and cell cycle assay.

OBJECTIVE

The goal of this present study is to bring attention to the biological activities of hydrazonoyl halides and the molecular pathway they follow to exert their role in apoptotic death of cancer cell.

METHODS

Synthesis of hydrazonoyl halides 2c and 2f. The cytotoxic effect against different human cancer cell lines PC3, HepG-2, HCT-116, MCF-7 and also on normal human cell lines as MCF-10 and MCF-12 in a monolayer culture model was evaluated. Their mechanism of action inside cancer cell was evaluated using different molecular tools.

CONCLUSION

Strong and promising chemotherapeutic hydrazonoyl halides (2a-2f) were evaluated for their different biological activities. As antimicrobial agents, results indicated that three compounds 2a, 2e and 2f exhibited high activity against two tested gram positive bacteria Staphylococcus aureus, Bacillus subtilis, and gram negative ones Escherichia coli, and Pseudomonas aeruginosa, the rest of the compounds were found to be moderately active against the tested microorganisms. Regarding their antifungal effect, compound 2c exhibited potent and promising effect against Candida albicans, while 2b was the most potent toward Aspergillus flavus Link. The compound 2f has repellent effect. With respect to the in vitro antitumor screening, this was done on different human cancer cell lines; namely PC3, HepG-2, HCT-116, MCF-7 and also on normal human cell lines; as MCF-10 and MCF-12 (normal breast epithelial cell and non-tumorigenic breast epithelial cell line) in a monolayer culture model where screening has been conducted at 100μg/ml (single dose test). Single dose test (100μg/ml) showed that, in case of PC3, all compounds have cytotoxic activity over 90% inhibition, 4 compounds have cytotoxic activity with 100% inhibition with Human colon cancer cell line, 4 compounds showed over 90% inhibition with MCF7 cell line and 4 compounds showed cytotoxic activity over 90% inhibition with HepG-2. Results of IC50 values for most promising compounds showed compounds with values lower than 20μM for all tested human cancer cell line. The promising hydrazonoyl halide 2c and 2f were selected for molecular study to know how they could act inside cancer cell causing death. Two biochemical tests were performed using the two halides 2c and 2f to predict their mechanism of action against breast carcinoma. Real time PCR analysis indicates that the two compounds induced the apoptosis of MCF7 cells through the up regulation of caspase-3, BAX mediated P53 mechanism but unfortunately, they promote the expression of anti-apoptotic protein BCL2. Also, cell cycle assay was performed using two different cell lines MCF7 and HCT116 and data revealed that the two compounds 2c and 2f induced apoptotic cells death of both lines via cell growth arrest at G2/M phase. In addition, it was noted that 2c induced arrest in the two lines more efficiently than 2f at G2/M phase.

摘要

背景

目前,酰腙卤化物是药物化学领域的一个重要目标。酰腙卤化物化学的研究兴趣源于它们可以经历广泛的反应,为各种杂环和非环化合物提供途径。此外,它们具有多种生物活性,如抗病毒、驱虫、抗节肢动物、杀真菌、除草、杀虫、杀昆虫、杀螨和杀霉菌活性,这与酰腙卤化物的存在有关。此外,在工业和制药领域已经发现了许多与之相关的应用。基于上述事实和我们的工作进展,我们在此报告了对这两种卤化物的抗癌活性的评估,这些卤化物是根据已发表的工作制备的,并试图了解它们的分子机制,即通过实时 PCR 等分子工具,使用不同的凋亡基因,以及细胞周期测定,来阻止肿瘤细胞的增殖和转移。

目的

本研究的目的是引起人们对酰腙卤化物的生物活性的关注,并了解它们在诱导癌细胞凋亡过程中所遵循的分子途径。

方法

合成酰腙卤化物 2c 和 2f。在单层培养模型中,评估它们对不同人癌细胞系 PC3、HepG-2、HCT-116、MCF-7 以及正常人类细胞系 MCF-10 和 MCF-12 的细胞毒性作用。使用不同的分子工具评估它们在癌细胞内的作用机制。

结论

对强和有前途的化疗酰腙卤化物(2a-2f)进行了不同生物活性的评估。作为抗菌剂,结果表明三种化合物 2a、2e 和 2f 对两种测试的革兰氏阳性菌金黄色葡萄球菌、枯草芽孢杆菌和革兰氏阴性菌大肠杆菌和铜绿假单胞菌表现出高活性,其余化合物对测试的微生物表现出中度活性。关于它们的抗真菌作用,化合物 2c 对白色念珠菌表现出有效和有前途的作用,而 2b 对黄曲霉属具有最强的作用。化合物 2f 具有驱避作用。关于体外抗肿瘤筛选,这是在不同的人癌细胞系上进行的;即 PC3、HepG-2、HCT-116、MCF-7 以及正常的人细胞系;作为 MCF-10 和 MCF-12(正常乳腺上皮细胞和非肿瘤性乳腺上皮细胞系)在单层培养模型中进行的,筛选在 100μg/ml(单次剂量试验)下进行。单次剂量试验(100μg/ml)表明,在 PC3 情况下,所有化合物的细胞毒性活性均超过 90%抑制,4 种化合物的细胞毒性活性为 100%抑制,对人结肠癌细胞系有 4 种化合物表现出超过 90%的抑制作用,4 种化合物对 MCF7 细胞系表现出超过 90%的抑制作用,4 种化合物对 HepG-2 表现出细胞毒性活性超过 90%抑制。最有前途的化合物的 IC50 值结果表明,所有测试的人癌细胞系的化合物值均低于 20μM。选择有前途的酰腙卤化物 2c 和 2f 进行分子研究,以了解它们如何在癌细胞内引起死亡。使用两种卤化物 2c 和 2f 进行了两项生化测试,以预测它们对乳腺癌的作用机制。实时 PCR 分析表明,这两种化合物通过上调 caspase-3、BAX 介导的 P53 机制诱导 MCF7 细胞凋亡,但不幸的是,它们促进了抗凋亡蛋白 BCL2 的表达。此外,还使用两种不同的细胞系 MCF7 和 HCT116 进行了细胞周期测定,数据表明这两种化合物 2c 和 2f 通过在 G2/M 期使细胞生长停滞,诱导这两条线的凋亡细胞死亡。此外,值得注意的是,2c 在 G2/M 期比 2f 更有效地诱导两条线的阻滞。

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