Targeting the DNA damage response to enhance radiotherapy in soft tissue sarcomas

Bauke H G van Riet1, Sanne Venneker2, Judith V M G Bovée2

  • 1Department of Radiotherapy, the Netherlands Cancer Institute, Amsterdam, the Netherlands.

Insights

Inhibiting DNA damage response (DDR) pathways shows promise for enhancing radiosensitivity in soft tissue sarcomas. However, current DDR inhibitors have limited impact on survival, necessitating further research for improved efficacy or dose reduction strategies.

Area of Science:

  • Oncology
  • Radiation Oncology
  • Molecular Biology

Background:

  • Radiotherapy is a key treatment for soft tissue sarcomas, inducing DNA damage to kill cancer cells.
  • Cellular DNA damage response (DDR) pathways can repair radiation-induced damage, limiting treatment efficacy.
  • Inhibiting DDR pathways is a potential strategy to sensitize tumors to radiation therapy.

Purpose of the Study:

  • To review the potential of DDR inhibition in enhancing radiosensitivity for soft tissue sarcomas.
  • To evaluate preclinical and clinical studies combining DDR inhibitors with radiotherapy.
  • To assess the relevance of DDR inhibitors for soft tissue sarcoma treatment.

Main Methods:

  • Literature search of databases, clinical trial registries, and conference abstracts.
  • Focus on studies combining DDR inhibitors (targeting PARP, ATM, ATR) and radiotherapy.
  • Evaluation of preclinical and clinical data on efficacy and toxicity.

Main Results:

  • Preclinical studies show DDR inhibition increases radiosensitivity with minimal toxicity.
  • Phase I/II clinical trials indicate DDR inhibitors are generally well-tolerated.
  • Phase II trials show limited improvement in disease control or survival, with some increased toxicities at higher radiation doses/schedules.

Conclusions:

  • Targeting DDR pathways is a promising strategy to enhance radiosensitivity in soft tissue sarcomas.
  • Current DDR inhibitors show limited efficacy in improving overall survival and recurrence rates.
  • Future efforts should focus on improving DDR inhibitor efficacy or reducing radiation doses while maintaining therapeutic benefit.