Cisplatin induces production of reactive oxygen species via NADPH oxidase activation in human prostate cancer cells

T Itoh, R Terazawa, K Kojima, K Nakane… - Free radical …, 2011 - Taylor & Francis
T Itoh, R Terazawa, K Kojima, K Nakane, T Deguchi, M Ando, Y Tsukamasa, M Ito…
Free radical research, 2011Taylor & Francis
This study aimed to examine the roles of reactive oxygen species (ROS) in cisplatin
treatment of human prostate cancer cells; hormone-sensitive LNCaP and hormone-
refractory PC3 and DU145 cells. Intracellular levels of ROS and H2O2 were measured and
visualized using specific fluorescent probes. NADPH oxidase (NOX) activity was detected by
lucigenin chemiluminescence assay. Expression levels of NOX isoforms were determined
by semi-quantitative RT-PCR. Cisplatin treatment increased the intracellular levels of ROS …
Abstract
This study aimed to examine the roles of reactive oxygen species (ROS) in cisplatin treatment of human prostate cancer cells; hormone-sensitive LNCaP and hormone-refractory PC3 and DU145 cells. Intracellular levels of ROS and H2O2 were measured and visualized using specific fluorescent probes. NADPH oxidase (NOX) activity was detected by lucigenin chemiluminescence assay. Expression levels of NOX isoforms were determined by semi-quantitative RT-PCR. Cisplatin treatment increased the intracellular levels of ROS and H2O2 in three prostate cancer cell lines. The increase was transient and robust in hormone-sensitive LNCaP cells compared with hormone-refractory PC3 and DU145 cells. Consistent with these findings, the NOX activity induced by cisplatin was higher in LNCaP cells than in PC3 and DU145 cells. Expression pattern of NOX isoforms varied among three cell lines and the NOX activity was independent of NOX expression. Taken together, we have shown that cisplatin induces production of ROS and H2O2 via NOX activation in human prostate cancer cell lines, which is most prominent in hormone-sensitive LNCaP cells.
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