PLK1 inhibition by onvansertib enhances paclitaxel efficacy and overcomes resistance in HR+/HER2- breast cancer refractory to endocrine therapy and CDK4/6 inhibitors

Abstract Hormone receptor-positive (HR+)/HER2-negative metastatic breast cancer that progresses on CDK4/6 inhibitors (CDK4/6i) and endocrine therapy (ET) faces a major therapeutic challenge, and chemotherapy is frequently used despite its modest clinical benefit. Paclitaxel is commonly used in this setting; however, intrinsic and acquired resistance substantially limit the depth and durability of response. Polo-like kinase 1 (PLK1) is a key mitotic regulator implicated in resistance to taxanes and ET/CDK4/6i. We evaluated whether PLK1 inhibition with onvansertib enhances paclitaxel activity in HR+ breast cancer models with intrinsic or acquired ET/CDK4/6i resistance, testing across six cell lines and eight patient-derived xenograft models, including paclitaxel-resistant tumors. The combination synergistically inhibited cell viability in vitro and improved antitumor efficacy in xenograft models. Notably, the combination induced tumor regression across all paclitaxel-resistant models, with complete responses in more than half of treated animals in three of five models, and deep, durable regressions in paclitaxel-sensitive models, markedly outperforming either agent alone. Mechanistically, the combination exacerbated mitotic stress, disrupted spindle architecture, suppressed proliferative and cell-cycle-associated transcriptional programs, and promoted proteasome-dependent c-MYC degradation, resulting in enhanced apoptotic cell death in vitro and in vivo. Importantly, genetic modulation of c-MYC expression altered the apoptotic response, establishing c-MYC downregulation as a key mediator of the observed antitumor efficacy. Collectively, these findings support PLK1 inhibition as a mechanistically rational strategy to potentiate taxane efficacy and overcome resistance in advanced HR+/HER2-negative breast cancer.

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Publication Details

Journal
Molecular Cancer Therapeutics
Published
2026-10-08
DOI
https://doi.org/10.1158/1535-7163.mct-26-0239
Primary Topic
Advanced Breast Cancer Therapies
Type
article
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article

PLK1 inhibition by onvansertib enhances paclitaxel efficacy and overcomes resistance in HR+/HER2- breast cancer refractory to endocrine therapy and CDK4/6 inhibitors

Tod Smeal, Peter J.P. Croucher, Élodie Montaudon, Laura Sourd et al.
Molecular Cancer Therapeutics
Advanced Breast Cancer Therapies
article

PLK1 inhibition by onvansertib enhances paclitaxel efficacy and overcomes resistance in HR+/HER2- breast cancer refractory to endocrine therapy and CDK4/6 inhibitors

Tod Smeal, Peter J.P. Croucher, Élodie Montaudon, Laura Sourd, Sreeja Sreekumar, Elisabetta Marangoni, Maya Ridinger, Héloïse Derrien, Chu-Chiao Wu, Davis Klein, Migdalia E. Gonzalez, Zeena Eblimit
article en

Abstract

Abstract Hormone receptor-positive (HR+)/HER2-negative metastatic breast cancer that progresses on CDK4/6 inhibitors (CDK4/6i) and endocrine therapy (ET) faces a major therapeutic challenge, and chemotherapy is frequently used despite its modest clinical benefit. Paclitaxel is commonly used in this setting; however, intrinsic and acquired resistance substantially limit the depth and durability of response. Polo-like kinase 1 (PLK1) is a key mitotic regulator implicated in resistance to taxanes and ET/CDK4/6i. We evaluated whether PLK1 inhibition with onvansertib enhances paclitaxel activity in HR+ breast cancer models with intrinsic or acquired ET/CDK4/6i resistance, testing across six cell lines and eight patient-derived xenograft models, including paclitaxel-resistant tumors. The combination synergistically inhibited cell viability in vitro and improved antitumor efficacy in xenograft models. Notably, the combination induced tumor regression across all paclitaxel-resistant models, with complete responses in more than half of treated animals in three of five models, and deep, durable regressions in paclitaxel-sensitive models, markedly outperforming either agent alone. Mechanistically, the combination exacerbated mitotic stress, disrupted spindle architecture, suppressed proliferative and cell-cycle-associated transcriptional programs, and promoted proteasome-dependent c-MYC degradation, resulting in enhanced apoptotic cell death in vitro and in vivo. Importantly, genetic modulation of c-MYC expression altered the apoptotic response, establishing c-MYC downregulation as a key mediator of the observed antitumor efficacy. Collectively, these findings support PLK1 inhibition as a mechanistically rational strategy to potentiate taxane efficacy and overcome resistance in advanced HR+/HER2-negative breast cancer.

Molecular Cancer Therapeutics
San Diego Cardiac Center (US), Institut Curie (FR)
Openalex Percentile: Top 12%
Advanced Breast Cancer Therapies
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