Expanding the therapeutic scope of PARP inhibitors in breast cancer: current indications and future directions

Homologous recombination repair deficiency (HRD) occurs in approximately 10% of breast tumors and represents a major targetable vulnerability across multiple cancer types. Impairment of the homologous recombination DNA repair pathway — arising through somatic and germline mutations in homologous recombination repair genes, epigenetic mechanisms, and transcriptomic changes — leads to genomic instability and a reliance on error-prone repair mechanisms. Poly (ADP-ribose) polymerase (PARP) inhibitors harness the synthetic lethality of HRD and PARP inhibition, with current approvals encompassing both early-stage and advanced breast cancer in patients with germline BRCA1/2 (g BRCA1/2 ) mutations. However, emerging evidence suggests efficacy of PARP inhibitors beyond g BRCA1/2 -mutated breast cancer to tumors with other homologous recombination repair defects that confer a “BRCAness” phenotype. This Review examines opportunities to broaden the use of PARP inhibitors in breast cancer and underscores the importance of innovative biomarkers, combination strategies, and next-generation agents to maximize therapeutic impact.

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Publication Details

Journal
Journal of Clinical Investigation
Published
2026-09-30
DOI
https://doi.org/10.1172/jci207632
Primary Topic
PARP inhibition in cancer therapy
Type
article
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article

Expanding the therapeutic scope of PARP inhibitors in breast cancer: current indications and future directions

Judy Ellen Garber, Geoffrey Ira Shapiro, Panagiotis A. Konstantinopoulos, Charlotte S. Walmsley et al.
Journal of Clinical Investigation
PARP inhibition in cancer therapy
article

Expanding the therapeutic scope of PARP inhibitors in breast cancer: current indications and future directions

Judy Ellen Garber, Geoffrey Ira Shapiro, Panagiotis A. Konstantinopoulos, Charlotte S. Walmsley, Filipa Lynce, Sara M. Tolaney, Adela Rodriguez
article en

Abstract

Homologous recombination repair deficiency (HRD) occurs in approximately 10% of breast tumors and represents a major targetable vulnerability across multiple cancer types. Impairment of the homologous recombination DNA repair pathway — arising through somatic and germline mutations in homologous recombination repair genes, epigenetic mechanisms, and transcriptomic changes — leads to genomic instability and a reliance on error-prone repair mechanisms. Poly (ADP-ribose) polymerase (PARP) inhibitors harness the synthetic lethality of HRD and PARP inhibition, with current approvals encompassing both early-stage and advanced breast cancer in patients with germline BRCA1/2 (g BRCA1/2 ) mutations. However, emerging evidence suggests efficacy of PARP inhibitors beyond g BRCA1/2 -mutated breast cancer to tumors with other homologous recombination repair defects that confer a “BRCAness” phenotype. This Review examines opportunities to broaden the use of PARP inhibitors in breast cancer and underscores the importance of innovative biomarkers, combination strategies, and next-generation agents to maximize therapeutic impact.

Journal of Clinical InvestigationVol. 136(19)
Harvard University (US), Dana-Farber Cancer Institute (US)
Openalex Percentile: Top 15%
PARP inhibition in cancer therapy
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Expanding the therapeutic scope of PARP inhibitors in breast cancer: current indications and future directions — Judy Ellen Garber, Geoffrey Ira Shapiro, et al. · Journal of Clinical Investigation (2026) | TGRS Research Map | TGRS