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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.
Abstract:
Recently, clinical development of PARP inhibitors (PARPi) expanded from using them as a single agent to combining them with DNA-damaging therapy to derive additional therapeutic benefit from stimulated DNA damage. Furthermore, inhibiting PARP in cancers with BRCA1/2 mutations has been shown to be an effective synthetic lethality approach either as a single agent or in combination with the different DNA damaging agents: chemotherapy or ionizing radiation (IR). However, inherited BRCA1/2 mutations account only for 5-10% of breast cancers, 10-15% of ovarian cancers, and lesser for the other cancers. Hence, for most of the cancer patients with BRCA1/2-proficient tumors, sensitization to DNA-damaging agents with PARPi is significantly less effective. We recently demonstrated that moderate, non-toxic concentrations of NO-donors inhibited BRCA1 expression, with subsequent inhibition of error-free HRR and increase of error-prone non-homologous end joining (NHEJ). We also demonstrated that the effect of NO-dependent block of BRCA1 expression can only be achieved in the presence of oxidative stress, a condition that characterizes the tumor microenvironment and is also a potential effect of IR. Hence, NO-donors in combination with PARPi, with effects limited by tumor microenvironment and irradiated area, suggest a precise tumor-targeted approach for radio-sensitization of BRCA1/2-proficient tumors. The combination with NO-donors allows PARPi to be successfully applied to a wider variety of tumors. The present work demonstrates a new drug combination (NO-donors and PARP-inhibitors) which demonstrated a high potency in sensitization of wide variety of tumors to ionizing radiation treatment.
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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