Exploiting DNA repair defects in breast cancer: from chemotherapy to immunotherapy

Burak Yasin Aktas1, Gurkan Guner1, Deniz Can Guven1

  • 1a Department of Medical Oncology , Hacettepe University Cancer Institute , Ankara , Turkey.

Insights

Exploiting DNA damage response (DDR) defects in breast cancer offers new therapeutic avenues. DDR-deficient tumors show promise with platinum-based drugs, PARP inhibitors, and immunotherapies for improved patient outcomes.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Impaired DNA damage response (DDR) leads to genomic instability, a hallmark of cancer.
  • DDR defects in cancer cells can be therapeutically exploited to induce cell death.
  • Breast cancer treatment strategies increasingly focus on leveraging DDR deficiencies.

Purpose of the Study:

  • To review DDR mechanisms in healthy cells and breast cancer.
  • To discuss current and emerging therapies for DDR-deficient breast cancer.
  • To highlight the potential of exploiting DDR defects for cancer treatment.

Main Methods:

  • Review of existing literature on DNA damage response pathways.
  • Analysis of therapeutic strategies targeting DDR-deficient breast cancer.
  • Synthesis of clinical data on conventional chemotherapy, targeted therapy, and immunotherapy.

Main Results:

  • Platinum-based regimens demonstrate efficacy in DDR-deficient breast cancer patients.
  • PARP inhibitors show high efficacy and manageable toxicity in BRCA-mutated breast cancer.
  • Immunotherapies exhibit promising activity, especially in immunogenic, DDR-deficient subtypes.

Conclusions:

  • Targeting DDR defects is a key strategy in breast cancer therapy.
  • A combination of chemotherapy, DNA-repair inhibitors, and immunotherapy holds potential for improved outcomes.
  • Personalized treatment approaches based on DDR status are crucial for optimizing patient care.