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Published on: May 11, 2018
Antisense oligonucleotides directed at the bcl-xl gene product augment chemotherapy response in mesothelioma
Mustafa K Ozvaran1, Xiaobo X Cao, Steven D Miller
1Department of Thoracic and Cardiovascular Surgery, The University of Texas M.D. Anderson Cancer Center, Houston 77030, USA.
Objective:
Malignant pleural mesothelioma (MPM) is resistant to both conventional chemotherapy and apoptosis. The bcl-2 family proteins are major determinants of apoptotic homeostasis. MPM lines and tumors routinely overexpress the anti-apoptotic protein BCL-XL. We have previously shown that antisense inhibition of BCL-XL in MPM cells leads to apoptosis. We sought to determine whether antisense oligonucleotides directed at the bcl-xl gene product would augment response to a conventional chemotherapeutic agent in human mesothelioma cell lines.
Methods:
The human MPM cell lines REN and I-45 were exposed to two bcl-xl antisense oligonucleotides (15999, 16009) and one sense oligonucleotide (113529) construct at varying doses, followed by IC(50) cisplatin. Cellular viability was assessed by a calorimetric assay, and apoptosis was evaluated by Hoechst staining, Annexin V staining, and sub-G(1) fluorescence-activated cell sorter analysis. Western blot analysis of BCL-2 family proteins was performed following single agent and combined treatment. Isobologram mathematical analysis was used to determine whether or not combination therapies were additive or synergistic.
Results:
Cell viability was most affected with the 15999 antisense oligonucleotides plus IC(50) cisplatin combination (70% of I-45 and 90% of REN cells killed), and apoptosis was markedly increased with this combination by all measures. Western blot demonstrated 15999 antisense oligonucleotides construct down-regulation of BCL-XL, but no further effect on expression of BCL-2 proteins with cisplatin. Isobologram analysis demonstrated 15999 + cisplatin synergistic effect.
Conclusions:
Exposure of human MPM cells to bcl-xl antisense oligonucleotides sensitizes human mesothelioma cells to the conventional chemotherapeutic agent cisplatin. Similar approaches using a combination of molecular and conventional treatment may have clinical utility for this tumor.
Insights
Antisense oligonucleotides targeting BCL-XL enhance cisplatin chemotherapy effectiveness in malignant pleural mesothelioma cells. This combination therapy shows synergistic effects, potentially improving treatment outcomes for this resistant cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Malignant pleural mesothelioma (MPM) exhibits resistance to conventional chemotherapy and apoptosis.
- Overexpression of the anti-apoptotic protein BCL-XL is common in MPM.
- Previous studies indicated that antisense inhibition of BCL-XL induces apoptosis in MPM cells.
Purpose of the Study:
- To investigate if bcl-xl antisense oligonucleotides can enhance the response of human mesothelioma cell lines to cisplatin.
- To evaluate the synergistic effects of combining bcl-xl antisense oligonucleotides with cisplatin.
Main Methods:
- Human MPM cell lines (REN and I-45) were treated with bcl-xl antisense oligonucleotides (15999, 16009) or a sense control (113529).
- Cells were subsequently exposed to IC(50) cisplatin, and viability was assessed.
- Apoptosis was measured using Hoechst staining, Annexin V staining, and sub-G(1) analysis.
- Western blot analyzed BCL-2 family protein expression, and isobologram analysis determined synergy.
Main Results:
- The combination of 15999 antisense oligonucleotides and cisplatin significantly reduced cell viability (70-90% cell death).
- This combination markedly increased apoptosis across all measured parameters.
- Western blot confirmed BCL-XL down-regulation by 15999 antisense oligonucleotides.
- Isobologram analysis revealed a synergistic effect between 15999 and cisplatin.
Conclusions:
- BCL-XL antisense oligonucleotides sensitize human MPM cells to cisplatin.
- Combined molecular and conventional therapeutic strategies hold potential clinical utility for MPM treatment.
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