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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Increased sensitivity to cis-diamminedichloroplatinum induced apoptosis with mitochondrial DNA depletion
1Department of Medicine (Medical Oncology), University of Colorado Health Sciences Center, Denver, Colorado, USA.
Abstract:
Malignant cells harbor mechanisms which allow escape from drug-induced apoptosis, and the drug-resistance phenotype can be significantly associated with resistance to programmed cell death. There is accumulating evidence that mitochondria play a role in the tumorigenic phenotype, including the relative resistance to apoptosis. Whether changes at the mitochondrial level per se, would impact on the relative sensitivity of malignant cells to undergo drug-induced apoptosis, is not know. Accordingly, we determined if depleting mitochondrial DNA (mtDNA) would change the susceptibility of U937 cells to undergo apoptosis. With depletion, increases in sensitivity to cis-diamminedichoroplatinum (cisplatin)-induced apoptosis was observed. This sensitivity could be reverted to the parental phenotype by transforming the depleted cells with normal platelet mitochondria. mRNA expression of BAX, BCL2, MDR1, MRP, ERCC1 and ERCC2, putatively associated with cisplatin resistance to apoptotic death was unchanged. Inhibition of mitochondrial ATP production by oligomycin did not result in a change in ATP levels, indicating energetics were not playing a role in the observed phenotype changes. All U937 cells (with/without mtDNA) continued to respond to cisplatin by an apoptotic death. MtDNA-encoded molecules may be playing a role in the relative sensitivity of cells to undergo a cisplatin-induced apoptotic death, but may not be required for cells to undergo apoptosis per se.
Insights
Depleting mitochondrial DNA (mtDNA) in U937 cells increased sensitivity to cisplatin-induced apoptosis. This suggests mtDNA-encoded molecules influence drug-induced apoptosis sensitivity in cancer cells.
Area of Science:
- Cell Biology
- Cancer Research
- Mitochondrial Biology
Background:
- Malignant cells evade drug-induced apoptosis, contributing to drug resistance.
- Mitochondria are implicated in cancer development and apoptosis resistance.
Purpose of the Study:
- To investigate if altering mitochondrial DNA (mtDNA) affects malignant cells' susceptibility to drug-induced apoptosis.
- To determine the role of mtDNA in cisplatin sensitivity.
Main Methods:
- U937 cells were treated to deplete mitochondrial DNA (mtDNA).
- Sensitivity to cisplatin-induced apoptosis was assessed in mtDNA-depleted and control cells.
- Cells were re-transformed with normal mitochondria to observe phenotypic reversion.
- mRNA expression of apoptosis-related genes and cellular ATP levels were analyzed.
Main Results:
- Depletion of mtDNA significantly increased U937 cell sensitivity to cisplatin-induced apoptosis.
- This increased sensitivity was reversed upon re-introduction of normal mitochondria.
- mRNA levels of key genes (BAX, BCL2, MDR1, MRP, ERCC1, ERCC2) remained unchanged.
- Mitochondrial ATP production inhibition did not alter ATP levels or affect the observed phenotype.
Conclusions:
- Mitochondrial DNA-encoded molecules may modulate the sensitivity of cancer cells to cisplatin-induced apoptosis.
- While mtDNA influences sensitivity, it is not essential for the apoptotic process itself.
- These findings highlight a potential therapeutic target for overcoming drug resistance in cancer.

