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PMID: 19770576 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Sorafenib induces preferential apoptotic killing of a drug- and radio-resistant Hep G2 cells through a mitochondria-dependent oxidative stress mechanism.

Cancer biology & therapy ·Vol. 8 ·No. 20 ·2009-10-00 ·Pages 1904-13

Chiou JF, Tai CJ, Wang YH, Liu TZ, Jen YM, Shiau CY

Abstract

Sorafenib (Nexavar, BAY43-9006), a bi-arylurea, is a newly established anti-cancer drug and its functional attribute of cytotoxicity is based on the multi-kinase inhibitory action. Here, we report yet another novel pathway in which sorafenib can induce apoptotic cell death preferentially and efficaciously on an experimentally proven drug- and radio-resistant human Hep G2 cells via a mitochondria-dependent oxidative stress mechanism. A real time confocal imaging assay revealed that sorafenib could rapidly provoke the production of ROS plethorically, mainly concentrating in the mitochondria, albeit substantial amounts of ROS could also be detected in cytosol and nucleus. The rapid production of ROS could simultaneously induce intracellular glutathione (iGSH) depletion. A nearly 90% of iGSH was found to be depleted in 1h period after the cells received the drug treatment. Besides mitochondria, iGSH depletion could also be detected in other cellular compartment including cytoplasm and nucleus. Interestingly, we also demonstrated that sorafenib could trigger mitochondrial Ca(2+) overload. All these events compoundedly serve as the final arbitrator to initiate lethal apoptotic process through the release of cytochrome c and caspase 3/7 activation. Collectively, we provide first evidence here that sorafenib can provoke an alternative pathway for apoptosis induction of Hep G2 cells through a mitochondria-dependent oxidative stress mechanism which is independent of original kinase inhibitory attribute of the drug action. Most importantly, we also demonstrate that sorafenib can effectively eradicate a highly drug- and radio-resistant HCC cells. Thus, our data can provide the basis for a potential applicability of sorafenib in a combined treatment modality.

MeSH Terms
Antineoplastic Agents/pharmacology Apoptosis/drug effects Benzenesulfonates/pharmacology Calcium/metabolism Carcinoma, Hepatocellular/metabolism,pathology Caspase 3/metabolism Caspase 7/metabolism Cell Line, Tumor Cell Survival/drug effects Cytochromes c/metabolism Dose-Response Relationship, Drug Enzyme Activation/drug effects Glutathione/metabolism Humans In Situ Nick-End Labeling Inhibitory Concentration 50 Intracellular Space/drug effects,metabolism Liver Neoplasms/metabolism,pathology Microscopy, Confocal Mitochondria/drug effects,metabolism Niacinamide/analogs & derivatives Oxidative Stress/drug effects Phenylurea Compounds Pyridines/pharmacology Reactive Oxygen Species/metabolism Sorafenib
Chemicals
Antineoplastic Agents Benzenesulfonates Phenylurea Compounds Pyridines Reactive Oxygen Species Niacinamide Cytochromes c Sorafenib Caspase 3 Caspase 7 Glutathione Calcium
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Chiou Jeng-Fong
Graduate Institute of Medical Sciences, School of Medicine, National Defense Medical Center, Taipei, Taiwan.
Tai Cheng-Jeng
Wang Yu-Huei
Liu Tsan-Zon
Jen Yee-Min
Shiau Chia-Yang
Article Info
Journal
Cancer biology & therapy
Abbr.
Cancer Biol Ther
ISSN
1555-8576
Published
2009-10-00
Epub
2009-00-06
Pages
1904-13
Language
English
Region
United States
NLM ID
101137842
Subset
IM
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