ML-7 amplifies the quinocetone-induced cell death through akt and MAPK-mediated apoptosis on HepG2 cell line
- Toxicol Mech Methods. 2016;26(1):11-21. doi: 10.3109/15376516.2015.1090513.
- 1. a Department of Pharmacology and Toxicology , College of Veterinary Medicine, China Agricultural University , Haidian , Beijing , PR China.
The study aims at evaluating the combination of the quinocetone and the ML-7 in preclinical hepatocellular carcinoma models. To this end, the effect of quinocetone and ML-7 on Apoptosis induction and signaling pathways was analyzed on HepG2 cell lines. Here, we report that ML-7, in a nontoxic concentration, sensitized the HepG2 cells to quinocetone-induced cytotoxicity. Also, ML-7 profoundly enhances quinocetone-induced Apoptosis in HepG2 cell line. Mechanistic investigations revealed that ML-7 and quinocetone act in concert to trigger the cleavage of Caspase-8 as well as Bax/Bcl-2 ratio up-regulation and subsequent cleavage of Bid, capsases-9 and -3. Importantly, ML-7 weakened the quinocetone-induced Akt pathway activation, but strengthened the phosphorylation of p-38, ERK and JNK. Further treatment of Akt Activator and p-38 inhibitor almost completely abolished the ML-7/quinocetone-induced Apoptosis. In contrast, the ERK and JNK Inhibitor aggravated the ML-7/quinocetone-induced Apoptosis, indicating that the synergism critically depended on p-38 phosphorylation and HepG2 cells provoke Akt, ERK and JNK signaling pathways to against Apoptosis. In conclusion, the rational combination of quinocetone and ML-7 presents a promising approach to trigger Apoptosis in hepatocellular carcinoma, which warrants further investigation.
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