| Literature DB >> 35112410 |
Zi-Lin Hou1, Feng-Ying Han1, Li-Li Lou1, Wen-Yu Zhao1, Xiao-Xiao Huang1, Guo-Dong Yao1, Shao-Jiang Song1.
Abstract
Cumulative evidence indicates that mitochondria dysfunction plays an important role in tumour treatment. Given the limited efficacy and toxicity of current mitochondria-targeted drugs, research into effective mitochondria-targeted anticancer agents remains an irresistible general trend. In this study, it was found that dehydrocrenatidine (DEC), a β-carbolin alkaloid isolated from Picrasma quassiodes, displays a promising growth inhibitory effect in vitro and in vivo by inducing apoptosis of hepatocellular carcinoma (HCC) cells. Mechanistically, we provided that the possible target of DEC against HCC cells was determined by isobaric labels for relative and absolute quantification assay and validated them using further experiments. The results suggested that DEC can target and regulate the function of mitochondrial complexes I, III and IV, affecting oxidative phosphorylation and ultimately leading to mitochondrial dysfunction to exert its anti-HCC effects. In addition, the combination of DEC and sorafenib showed a synergistic effect and was also associated with mitochondrial dysfunction. Importantly, DEC did not show significant toxicity in mice. This study provided a new insight into underlying mechanisms in DEC-treated HCC cells, suggesting that DEC might be a mitochondrial targeting lead compound.Entities:
Keywords: apoptosis; dehydrocrenatidine; hepatocellular carcinoma; mitochondrial complexes; mitochondrial function
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Year: 2022 PMID: 35112410 DOI: 10.1002/ptr.7398
Source DB: PubMed Journal: Phytother Res ISSN: 0951-418X Impact factor: 5.878