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ATR Inhibition Broadly Sensitizes Soft-Tissue Sarcoma Cells to Chemotherapy Independent of Alternative Lengthening
Audrey Laroche-Clary1,2, Vanessa Chaire1,2, Stéphanie Verbeke1,2
1INSERM ACTION U1218, Institut Bergonié, Bordeaux, France.
Abstract:
Only few drugs have shown activity in patients with advanced soft-tissue and the median overall survival is only 18 months. Alterations of genes involved in the DNA damage repair pathway have been associated with sarcoma risk and prognosis. ATR plays a crucial role in maintaining genomic integrity by responding to a large spectrum of DNA damage, including double strand breaks (DSBs) that interfere with replication. The objective of this study is to evaluate the pre-clinical activity of ATR inhibition in soft tissue sarcomas (STS). We explored the ability of the ATR inhibitor, VE-822, to prevent chemotherapy-induced intra-S-phase checkpoint activation and evaluated the antitumor potential of this combination in vitro and in vivo in STS cell lines and in a patient-derived xenograft model. The combination of VE-822 and gemcitabine in vitro was synergistic, inhibited cell proliferation, induced apoptosis, and accumulated in the S phase of the cell cycle with higher efficacy than either single agent alone. The combination also resulted in enhanced γH2AX intranuclear accumulation as a result of DNA damage induction. These effects were unrelated to the alternative lengthening of telomeres pathway. In vivo, the combination of VE-822 and gemcitabine significantly enhanced tumor growth inhibition and progression-free survival in an aggressive model of undifferentiated pleomorphic sarcoma. The combination of ATR inhibitor and chemotherapy is beneficial in pre-clinical models of soft-tissue sarcoma and deserves further exploration in the clinical setting.
Insights
Combining an ATR inhibitor with chemotherapy shows promise for treating soft-tissue sarcomas (STS). This preclinical study found the combination effectively inhibited tumor growth and improved survival, warranting further clinical investigation.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Advanced soft-tissue sarcomas (STS) have limited treatment options and poor prognosis.
- DNA damage repair (DDR) pathway alterations impact sarcoma risk and outcomes.
- ATR is vital for genomic integrity, responding to DNA damage and replication stress.
Purpose of the Study:
- To evaluate the preclinical efficacy of ATR inhibition in soft-tissue sarcomas (STS).
- To assess the combination of ATR inhibitor VE-822 and gemcitabine in STS models.
- To investigate the impact on chemotherapy-induced DNA damage response and cell cycle progression.
Main Methods:
- In vitro studies using STS cell lines to assess synergy, proliferation, apoptosis, and cell cycle effects.
- In vivo evaluation in a patient-derived xenograft model of undifferentiated pleomorphic sarcoma.
- Analysis of DNA damage markers (e.g., γH2AX) and the alternative lengthening of telomeres (ALT) pathway.
Main Results:
- The combination of VE-822 and gemcitabine demonstrated synergistic effects in vitro, inhibiting proliferation and inducing apoptosis.
- Combined treatment led to enhanced S-phase accumulation and increased DNA damage (γH2AX).
- In vivo, the combination significantly improved tumor growth inhibition and progression-free survival in an aggressive STS model.
Conclusions:
- ATR inhibition combined with chemotherapy is a potentially beneficial strategy for soft-tissue sarcomas.
- This combination warrants further clinical investigation for advanced STS treatment.
- The findings highlight the role of targeting DNA damage response pathways in sarcoma therapy.
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