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PARP inhibition suppresses the emergence of temozolomide resistance in a model system
Alice L Yuan1,2, Mathieu Meode1,2, Melanie Tan1,2
1Clark H. Smith Brain Tumour Centre, University of Calgary, Calgary, AB, Canada.
Introduction:
Temozolomide (TMZ) is a life prolonging DNA alkylating agent active against glioblastomas (GBM) in which the O6-methylguanine-DNA methyltransferase (MGMT) gene is silenced by promoter methylation. Unfortunately acquired TMZ resistance severely undermines its clinical efficacy. Using an in vitro model, we tested whether poly (ADP-ribose) polymerase-1 and -2 (PARP) inhibition could suppress the emergence of resistance to enhance the effectiveness of TMZ.
Methods:
Using the MGMT-methylated GBM line U251N, in which TMZ resistance can be induced, we developed a method to rapidly recreate mechanisms of TMZ resistance seen in GBMs, including MMR mutations and MGMT re-expression. We then assessed whether TMZ resistant U251N sub-clones could be re-sensitized to TMZ by co-treatment with the PARP inhibitor ABT-888, and also whether the emergence of resistance could be suppressed by PARP inhibition.
Results:
U251N cultures chronically exposed to TMZ developed discrete colonies that expanded during TMZ treatment. These colonies were isolated, expanded further as sub-clones, and assessed for mechanisms of TMZ resistance. Most resistant sub-clones had detectable mutations in one or more mismatch repair (MMR) genes, frequently MSH6, and displayed infrequent re-expression of MGMT. TMZ resistance was associated with isolated poly(ADP-ribose) (pADPr) up-regulation in one sub-clone and was unexplained in several others. TMZ resistant sub-clones regressed during co-treatment with TMZ and ABT-888, and early co-treatment of U251N parental cultures suppressed the emergence of TMZ resistant colonies.
Conclusion:
In a model of acquired resistance, co-treatment with TMZ and a PARP inhibitor had two important benefits: re-sensitization of TMZ resistant cells and suppression of TMZ resistance.
Insights
Poly (ADP-ribose) polymerase-1 and -2 (PARP) inhibition resensitized glioblastoma cells to temozolomide (TMZ) and suppressed acquired TMZ resistance. This combination therapy offers a promising strategy to overcome treatment resistance in glioblastoma multiforme (GBM).
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Temozolomide (TMZ) is a DNA alkylating agent effective against glioblastoma (GBM) with methylated O6-methylguanine-DNA methyltransferase (MGMT).
- Acquired TMZ resistance significantly limits its clinical efficacy in GBM treatment.
- Investigating strategies to overcome TMZ resistance is crucial for improving patient outcomes.
Purpose of the Study:
- To evaluate the efficacy of poly (ADP-ribose) polymerase-1 and -2 (PARP) inhibition in overcoming acquired TMZ resistance in glioblastoma.
- To determine if PARP inhibition can resensitize TMZ-resistant GBM cells and suppress the emergence of resistance.
Main Methods:
- Utilized an in vitro model of acquired TMZ resistance using the U251N GBM cell line.
- Induced resistance mechanisms including mismatch repair (MMR) gene mutations and MGMT re-expression.
- Assessed the effects of co-treatment with TMZ and the PARP inhibitor ABT-888 on resistant and parental cell lines.
Main Results:
- Developed TMZ-resistant U251N sub-clones, primarily associated with MMR gene mutations (e.g., MSH6) or MGMT re-expression.
- Co-treatment with TMZ and ABT-888 led to the regression of TMZ-resistant sub-clones.
- Early co-treatment suppressed the emergence of new TMZ-resistant colonies in parental GBM cultures.
Conclusions:
- PARP inhibition resensitizes acquired TMZ-resistant glioblastoma cells.
- Concurrent administration of TMZ and PARP inhibitors effectively suppresses the development of TMZ resistance.
- This combination therapy presents a potential strategy to enhance TMZ efficacy in GBM treatment.
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