Title of article :
miR-205 Reverses MDR-1 Mediated Doxorubicin Resistance via PTEN in Human Liver Cancer HepG2 Cells
Author/Authors :
Li ، Mei Department of Minimally Invasive Intervention - Shaanxi Provincial Cancer Hospital , Li ، Zhubin Department of Minimally Invasive Intervention - Shaanxi Provincial Cancer Hospital , Song ، Juanrong Department of Minimally Invasive Intervention - Shaanxi Provincial Cancer Hospital , Li ، Xu Department of Oncology - Shaanxi Provincial Cancer Hospital , Zhai ، Pengtao Department of Minimally Invasive Intervention - Shaanxi Provincial Cancer Hospital , Mu ، Xudong Department of Minimally Invasive Intervention - Shaanxi Provincial Cancer Hospital , Qiu ، Fakai Department of Minimally Invasive Intervention - Shaanxi Provincial Cancer Hospital , Yao ، Le Department of Infectious Diseases - First Hospital of Yulin
From page :
112
To page :
119
Abstract :
Objective: The aim of the recent study was to investigate the effects of miR-205 on reversing Doxorubicin (DOX) resistance, as chemotherapeutic agents through up-regulation of PTEN in human liver cancer HepG2 cells. Materials and Methods: In this experimental study, the drug resistance in liver cancer cells via drug efflux inhibition and enhancing apoptosis by the regulation of PTEN and multi-drug resistance/ P-glycoprotein (MDR/P-gp) expression was revealed. Using 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay, effect of DOX on cell proliferation was evaluated after miR-205 transfection in HepG2 and HepG2/DOX cells. Activity of P-gp on drug efflux was measured by the Rhodamine 123 (Rho-123) assay. PTEN mRNA expression levels were measured by quantitative reverse transcription polymerase chain reaction (qRT-PCR) and flow cytometry was used to measure the apoptotic ratio of HepG2/DOX cells. Results: miR-205 overexpression considerably inhibited the HepG2/DOX cells viability (P 0.05). qRT-PCR results revealed that PTEN is a pivotal regulator in PI3K/Akt/P-gp axis. Overexpression miR-205 resulted in up-regulation PTEN and ultimately down-regulation of P-gp. This inhibits drug resistance, proliferation and induces apoptosis in HepG2/DOX cells (P 0.05). Whilst, treatment with 10 μM of special inhibitors, including LY294002 (PI3K) or PD098059 (MAPK), increased Rho 123-associated MFI, treatment with 10 μM of SF1670 (PTEN) almost abolished the effect of miR-205 overexpression (P 0.05). Finally, we found that miR-205 was down-regulated in HepG2/DOX cells, and its overexpression led to enhancing apoptosis with re-sensitization of HepG2/DOX cell lines to DOX through PTEN/PI3K/ Akt/MDR1 pathway. Conclusion: These findings may introduce miR-205 as a predictive biomarker and a potential treatment target for liver cancer therapy during MDR.
Keywords :
Drug Resistance , Liver Cancer , miR , 205 , PGlycoprotein , P , TEN
Journal title :
Cell Journal (Yakhteh)
Journal title :
Cell Journal (Yakhteh)
Record number :
2708726
Link To Document :
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