Characterization of mitochondria in cisplatin-resistant human ovarian carcinoma cells

  • Authors:
    • Masanori Hirama
    • Seiji Isonishi
    • Makoto Yasuda
    • Hiroshi Ishikawa
  • View Affiliations

  • Published online on: November 1, 2006     https://doi.org/10.3892/or.16.5.997
  • Pages: 997-1002
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Abstract

One of the mechanisms of cisplatin cell cytotoxicity is the mitochondria-associated induction of apoptosis. The morphological or functional change of mitochondria in cisplatin-resistant cells has already been reported. Herein we present additional data describing the mitochondrial genomic and functional changes in cisplatin- resistant cells. Cisplatin increased the level of apoptotic cells in cisplatin-sensitive human ovarian carcinoma OV 2008 and C13 cells by 3.90±1.01 (SD; N=3) (p<0.01)-fold and 2.03±0.20 (SD; N=3) (p<0.01)-fold compared to the basal apoptotic level. This indicates a lower level induction of apoptosis by 50% in cisplatin-resistant OV 2008/C13∗5.25 variant (C13) cells. In both cell types, cisplatin cytotoxicity is mostly inhibited by the caspase-9 inhibitor as well as the caspase-3 inhibitor, Ac-DEVD-CHO, suggesting that the mitochondrial downstream event was functioning well in both the C13 cells and in OV 2008 cells. Mitochondrial transmembrane potential (ΔΨm) determined by flow cytometry using DiOC6-stained cells revealed a significant depolarization of C13 cells as compared to OV 2008 cells. Treatment of these cells with cisplatin or hydrogen peroxide induces complete mitochondrial DNA damage in OV 2008 cells, while only partial DNA-destruction is observed in C13 cells, strongly suggesting that mitochondria are resistant to cisplatin and oxidative stress response. Continuous oxygen consumption of these cells monitored by a multi-channel dissolved oxygen meter is 1.70-fold higher in OV 2008 cells than C13 cells and the oxygen consumption was decreased by 30% in C13 cells, suggesting mitochondrial respiratory malfunction in these cells. The hypothesis generated here is that mitochondrial DNA resistance to cisplatin and oxidative stress response might be one of the main characteristics concerning the lower level of apoptosis induced by cisplatin. However, the mechanism by which the mitochondrial DNA encoded molecule is involved in cisplatin resistance remains to be determined.

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November 2006
Volume 16 Issue 5

Print ISSN: 1021-335X
Online ISSN:1791-2431

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Spandidos Publications style
Hirama M, Isonishi S, Yasuda M and Ishikawa H: Characterization of mitochondria in cisplatin-resistant human ovarian carcinoma cells. Oncol Rep 16: 997-1002, 2006
APA
Hirama, M., Isonishi, S., Yasuda, M., & Ishikawa, H. (2006). Characterization of mitochondria in cisplatin-resistant human ovarian carcinoma cells. Oncology Reports, 16, 997-1002. https://doi.org/10.3892/or.16.5.997
MLA
Hirama, M., Isonishi, S., Yasuda, M., Ishikawa, H."Characterization of mitochondria in cisplatin-resistant human ovarian carcinoma cells". Oncology Reports 16.5 (2006): 997-1002.
Chicago
Hirama, M., Isonishi, S., Yasuda, M., Ishikawa, H."Characterization of mitochondria in cisplatin-resistant human ovarian carcinoma cells". Oncology Reports 16, no. 5 (2006): 997-1002. https://doi.org/10.3892/or.16.5.997