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PARP1 Inhibitor and Trabectedin Combination Does Not Increase Tumor Mutational Burden in Advanced Sarcomas-A
Ymera Pignochino1,2, Giovanni Crisafulli2,3, Giorgia Giordano2,3
1Department of Clinical and Biological Sciences, University of Torino, 10100 Torino, Italy.
Abstract:
Drug-induced tumor mutational burden (TMB) may contribute to unleashing the immune response in relatively "immune-cold" tumors, such as sarcomas. We previously showed that PARP1 inhibition perpetuates the DNA damage induced by the chemotherapeutic agent trabectedin in both preclinical models and sarcoma patients. In the present work, we explored acquired genetic changes in DNA repair genes, mutational signatures, and TMB in a translational platform composed of cell lines, xenografts, and tumor samples from patients treated with trabectedin and olaparib combination, compared to cells treated with temozolomide, an alkylating agent that induces hypermutation. Whole-exome and targeted panel sequencing data analyses revealed that three cycles of trabectedin and olaparib combination neither affected the mutational profiles, DNA repair gene status, or copy number alterations, nor increased TMB both in homologous recombinant-defective and proficient cells or in xenografts. Moreover, TMB was not increased in tumor specimens derived from trabectedin- and olaparib-treated patients (5-6 cycles) when compared to pre-treatment biopsies. Conversely, repeated treatments with temozolomide induced a massive TMB increase in the SJSA-1 osteosarcoma model. In conclusion, a trabectedin and olaparib combination did not show mutagenic effects and is unlikely to prime subsequent immune-therapeutic interventions based on TMB increase. On the other hand, these findings are reassuring in the increasing warning of treatment-induced hematologic malignancies correlated to PARP1 inhibitor use.
Insights
The trabectedin and olaparib combination did not increase tumor mutational burden (TMB) in sarcoma models or patients. This combination is unlikely to enhance immune responses via TMB and is reassuring regarding PARP1 inhibitor safety concerns.
Area of Science:
- Oncology
- Cancer Genomics
- Drug Development
Background:
- Drug-induced tumor mutational burden (TMB) can enhance immune responses in immune-cold tumors like sarcomas.
- PARP1 inhibition combined with trabectedin perpetuates DNA damage.
- Investigating acquired genetic changes and TMB is crucial for combination therapies.
Purpose of the Study:
- To evaluate acquired genetic changes, mutational signatures, and TMB in response to trabectedin and olaparib combination therapy.
- To compare the mutagenic effects of trabectedin/olaparib with temozolomide.
- To assess the potential of trabectedin/olaparib to prime immune-therapeutic interventions.
Main Methods:
- Whole-exome and targeted panel sequencing of cell lines, xenografts, and patient tumor samples.
- Analysis of DNA repair gene status, mutational signatures, and TMB.
- Comparison of treatment groups: trabectedin/olaparib vs. temozolomide.
Main Results:
- Trabectedin and olaparib combination did not alter mutational profiles, DNA repair gene status, or TMB in preclinical models or patient samples.
- Temozolomide treatment induced a significant increase in TMB in the SJSA-1 osteosarcoma model.
- No increase in TMB was observed in patients treated with trabectedin and olaparib.
Conclusions:
- Trabectedin and olaparib combination therapy lacks mutagenic effects and is unlikely to enhance immune responses through TMB induction.
- Findings are reassuring concerning the risk of treatment-induced hematologic malignancies associated with PARP1 inhibitors.
- Temozolomide effectively increases TMB, unlike the trabectedin/olaparib combination.
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