Nitric oxide-donor/PARP-inhibitor combination: A new approach for sensitization to ionizing radiation

Aaron Wilson1, Vijay Menon2, Zubair Khan1

  • 1Department of Radiation Oncology, Massey Cancer Center, Virginia Commonwealth University, 401 College St., Richmond, VA 23298, United States.

Redox Biology
|March 20, 2019
PubMed

Insights

New research shows combining NO-donors with PARP inhibitors (PARPi) can sensitize BRCA1/2-proficient tumors to radiation therapy. This approach expands PARPi

Area of Science:

  • Oncology
  • Cancer Therapeutics
  • DNA Damage Response

Background:

  • PARP inhibitors (PARPi) are effective in cancers with BRCA1/2 mutations via synthetic lethality.
  • PARPi efficacy is limited in BRCA1/2-proficient tumors, which constitute the majority of cancer cases.
  • Tumor microenvironment often presents oxidative stress, a condition relevant for DNA repair modulation.

Purpose of the Study:

  • To investigate a novel drug combination for sensitizing BRCA1/2-proficient tumors to DNA-damaging agents.
  • To explore the potential of NO-donors in combination with PARPi for enhanced cancer therapy.

Main Methods:

  • Utilized NO-donors at non-toxic concentrations to inhibit BRCA1 expression.
  • Investigated the role of oxidative stress in mediating the effects of NO-donors on DNA repair pathways.
  • Evaluated the radiosensitizing potential of the NO-donor and PARPi combination in various tumor models.

Main Results:

  • NO-donors inhibited BRCA1 expression, shifting DNA repair from error-free HRR to error-prone NHEJ.
  • This effect was dependent on oxidative stress, mimicking tumor microenvironment conditions.
  • The combination of NO-donors and PARPi demonstrated significant radiosensitization across diverse tumor types.

Conclusions:

  • NO-donors combined with PARPi offer a targeted approach for radiosensitizing BRCA1/2-proficient tumors.
  • This strategy broadens the applicability of PARPi to a wider range of cancers.
  • The combination shows high potency in sensitizing tumors to ionizing radiation treatment.

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