首页> 外文期刊>Saudi Pharmaceutical Journal >Antiproliferative and antimigratory effects of 3-(4-substituted benzyl)-5- isopropyl-5-phenylhydantoin derivatives in human breast cancer cells
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Antiproliferative and antimigratory effects of 3-(4-substituted benzyl)-5- isopropyl-5-phenylhydantoin derivatives in human breast cancer cells

机译:3-(4-取代苄基)-5-异丙基-5-苯基羟基蛋白衍生物在人乳腺癌细胞中的抗增殖和抗牵引作用

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摘要

In this study, a series of synthesized 3-(4-substituted benzyl)-5-isopropyl-5-phenylhydantoin derivatives as a potential antiproliferative and antimigratory agents were investigated. The possible antitumor mechanisms of investigated hydantoin derivatives were examined on human breast cancer cell line MDA-MB-231. The cells were treated with different concentrations of compounds (from 0.01?μM to 100?μM) during 24?h and 72?h. The proliferation index, nitric oxide production, apoptosis rate, and migration capacity were measured. The cell invasion potential was examined by measuring the level of MMP-9 and COX-2 gene expression. All tested compounds expressed antiproliferative activity and induced dose- and time-dependent increase in the level of nitrites. The investigated molecules significantly decreased cell survival rate, migration capacity and the expression levels of genes included in the process of tumor invasion. Obtained data suggest that the tested hydantoin derivatives express considerable antitumor activity by reducing cell division rate, elevating apoptosis level, and inhibiting the motility and invasiveness of breast cancer cells. The results obtained in this study indicate that investigated compounds express potential as a novel chemotherapeutic agents against breast cancer growth and progression.
机译:在该研究中,研究了一系列合成的3-(4-取代的苄基)-5-异丙基-5-苯基硫磺蛋白衍生物,作为潜在的抗增殖和抗血管剂。在人乳腺癌细胞系MDA-MB-231上检查了研究的乙藻衍生物的可能抗肿瘤机制。在24℃和72℃下,用不同浓度的化合物(0.01×μm至100μm)处理细胞。测量了增殖指数,一氧化氮产生,凋亡率和迁移能力。通过测量MMP-9和COX-2基因表达水平来检查细胞侵袭电位。所有测试的化合物表达抗增殖活性,并诱导亚硝酸盐水平的剂量和时间依赖性增加。所研究的分子显着降低了肿瘤侵袭过程中包含的细胞存活率,迁移能力和基因的表达水平。获得的数据表明,测试的乙藻衍生物通过降低细胞分裂率,升高凋亡水平并抑制乳腺癌细胞的动力和侵袭性来表达相当大的抗肿瘤活性。本研究中获得的结果表明,研究的化合物表达潜在作为一种针对乳腺癌生长和进展的新型化学治疗剂。

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