Karjalainen Anzhelika, Doan Phuong, Chandraseelan Jerome G, Sandberg Ossi, Yli-Harja Olli, Candeias Nuno R, Kandhavelu Meenakshisundaram
Molecular Signaling Lab, Computational Systems Biology Research Group, Department of Signal Processing, Tampere University of Technology, P.O.Box 553, 33101, Tampere. Finland.
Dept of Chemistry and Bioengineering, Tampere University of Technology, Korkeakoulunkatu 8, 33101 Tampere. Finland.
Anticancer Agents Med Chem. 2017;17(12):1710-1720. doi: 10.2174/1871520617666170327142027.
Phenolic compounds are known for their cytotoxic properties against cancer cells despite their still unclear general mechanism of action. Herein is reported the evaluation of the cytotoxic effects of on human osteosarcoma cells of nine phenol derivatives against osteosarcoma cells, and some insights on their mechanism.
The cytotoxicity was characterized by cell viability, scratch assay, cellular DNA content measurement, Annexin V apoptosis, mitochondrial calcium and caspase 3/7 assays. The study shows that out of the nine compounds used in this study, a tetrahydroquinoline derivative, 2-((1,2,3,4-tetrahydroquinolin-1-yl)(4- methoxyphenyl)methyl) phenol, was found to exhibit strong inhibitory response with IC50 of 50.5 ± 3.8 µM, and therefore can be a potential chemotherapeutic agent. Further experiments revealed that this compound induces cell death by apoptosis and also act as a migration inhibitor. Analysis of the mitochondrial calcium following treatment with the compound on U2OS cells showed a significant reduction in the level of mitochondrial calcium concentration suggesting a mitochondrial calcium-independent mechanism in triggering apoptosis. Treatment of HEK293 cells with the compound confirmed the cytotoxic effects of the compound, however, an increase in the level of mitochondrial calcium was observed. Moreover, the caspase 3/7 mediated cell death was also observed in both cell types.
Overall, the study suggests that the derivatives of this compound can be used for development of new therapeutics for osteosarcoma and other cancers.
酚类化合物以其对癌细胞的细胞毒性特性而闻名,尽管其总体作用机制仍不清楚。本文报道了九种酚类衍生物对人骨肉瘤细胞的细胞毒性作用评估及其作用机制的一些见解。
通过细胞活力、划痕试验、细胞DNA含量测定、膜联蛋白V凋亡检测、线粒体钙检测和半胱天冬酶3/7检测来表征细胞毒性。研究表明,在本研究使用的九种化合物中,一种四氢喹啉衍生物,即2-((1,2,3,4-四氢喹啉-1-基)(4-甲氧基苯基)甲基)苯酚,表现出强烈的抑制反应,IC50为50.5±3.8μM,因此可能是一种潜在的化疗药物。进一步的实验表明,该化合物通过凋亡诱导细胞死亡,并且还作为迁移抑制剂起作用。用该化合物处理U2OS细胞后对线粒体钙的分析表明,线粒体钙浓度水平显著降低,这表明在触发凋亡过程中存在线粒体钙非依赖性机制。用该化合物处理HEK293细胞证实了该化合物的细胞毒性作用,然而,观察到线粒体钙水平升高。此外,在两种细胞类型中均观察到半胱天冬酶3/7介导的细胞死亡。
总体而言,该研究表明该化合物的衍生物可用于开发针对骨肉瘤和其他癌症的新疗法。