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PARP Inhibition Elicits STING-Dependent Antitumor Immunity in Brca1-Deficient Ovarian Cancer

Cell Reports · 2018 · Vol. 25(11) · pp. 2972–2980.e5
Liya DingHye‐Jung KimQiwei WangMichael KearnsTao JiangCarolynn E. OhlsonBen B. LiShaozhen XieJoyce F. LiuElizabeth H. StoverBrooke E. HowittRoderick T. BronsonSuzan LazoThomas M. RobertsGordon J. FreemanPanagiotis A. KonstantinopoulosUrsula A. MatulonisJean J. Zhao

Abstract

PARP inhibitors have shown promising clinical activities for patients with BRCA mutations and are changing the landscape of ovarian cancer treatment. However, the therapeutic mechanisms of action for PARP inhibition in the interaction of tumors with the tumor microenvironment and the host immune system remain unclear. We find that PARP inhibition by olaparib triggers robust local and systemic antitumor immunity involving both adaptive and innate immune responses through a STING-dependent antitumor immune response in mice bearing Brca1-deficient ovarian tumors. This effect is further augmented when olaparib is combined with PD-1 blockade. Our findings thus provide a molecular mechanism underlying antitumor activity by PARP inhibition and lay a foundation to improve therapeutic outcome for cancer patients.

PARP inhibition in cancer therapyViral Infections and VectorsViral Infections and Outbreaks ResearchOlaparibOvarian cancerImmune systemInnate immune systemCancer researchPoly ADP ribose polymerasePARP inhibitorImmunityTumor microenvironmentBiology

MeSH terms

Poly(ADP-ribose) Polymerase InhibitorsSTING ProteinAnimalsDendritic CellsFemaleHumansImmunityMembrane ProteinsMice, Inbred C57BLOvarian NeoplasmsPhthalazinesPiperazinesT-Lymphocytes, CytotoxicTreatment OutcomeBRCA1 Protein

Funding

  • Breast Cancer Research Foundation
  • Ovarian Cancer Research Fund Alliance
  • National Institutes of Health
  • National Cancer Institute
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