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Analysis of temozolomide resistance in low-grade gliomas using a mechanistic mathematical model
Edouard Ollier1,2,3, Pauline Mazzocco1, Damien Ricard4,5
1U.M.P.A., Ecole Normale Supérieure de Lyon, CNRS UMR 5669, INRIA, Project-team NUMED, 46 Allée d'Italie, 69364, Lyon Cedex 07, France.
Abstract:
Understanding how tumors develop resistance to chemotherapy is a major issue in oncology. When treated with temozolomide (TMZ), an oral alkylating chemotherapy drug, most low-grade gliomas (LGG) show an initial volume decrease but this effect is rarely long lasting. In addition, it has been suggested that TMZ may drive tumor progression in a subset of patients as a result of acquired resistance. Using longitudinal tumor size measurements from 121 patients, the aim of this study was to develop a semi-mechanistic mathematical model to determine whether resistance of LGG to TMZ was more likely to result from primary and/or from chemotherapy-induced acquired resistance that may contribute to tumor progression. We applied the model to a series of patients treated upfront with TMZ (n = 109) or PCV (procarbazine, CCNU, vincristine) chemotherapy (n = 12) and used a population mixture approach to classify patients according to the mechanism of resistance most likely to explain individual tumor growth dynamics. Our modeling results predicted acquired resistance in 51% of LGG treated with TMZ. In agreement with the different biological effects of nitrosoureas, none of the patients treated with PCV were classified in the acquired resistance group. Consistent with the mutational analysis of recurrent LGG, analysis of growth dynamics using mathematical modeling suggested that in a subset of patients, TMZ might paradoxically contribute to tumor progression as a result of chemotherapy-induced resistance. Identification of patients at risk of developing acquired resistance is warranted to better define the role of TMZ in LGG.
Insights
Chemotherapy resistance in low-grade gliomas (LGG) is a challenge. Mathematical modeling suggests temozolomide (TMZ) causes acquired resistance in 51% of LGG patients, potentially driving tumor progression.
Area of Science:
- Oncology
- Mathematical Biology
- Chemotherapy Resistance
Background:
- Low-grade gliomas (LGG) often develop resistance to temozolomide (TMZ) chemotherapy, limiting treatment efficacy.
- Acquired resistance to TMZ may paradoxically drive tumor progression in a subset of LGG patients.
Purpose of the Study:
- To develop a mathematical model to distinguish between primary and acquired resistance to TMZ in LGG.
- To investigate if TMZ contributes to tumor progression through acquired resistance.
Main Methods:
- Utilized longitudinal tumor size measurements from 121 LGG patients.
- Developed a semi-mechanistic mathematical model with a population mixture approach.
- Applied the model to patients treated with TMZ or PCV chemotherapy.
Main Results:
- Acquired resistance to TMZ was predicted in 51% of LGG patients.
- No patients treated with PCV chemotherapy were classified under acquired resistance.
- Mathematical modeling indicated TMZ may promote tumor progression in some patients due to acquired resistance.
Conclusions:
- Acquired resistance is a significant factor in TMZ treatment failure for LGG.
- TMZ may paradoxically drive tumor progression in a subset of patients via acquired resistance.
- Identifying patients at risk for acquired resistance is crucial for optimizing LGG treatment strategies.

