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Updated: Feb 5, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
ATR Inhibition Is a Promising Radiosensitizing Strategy for Triple-Negative Breast Cancer
Xinyi Tu1, Mohamed M Kahila1, Qin Zhou1
1Department of Radiation Oncology, Mayo Clinic, Rochester, Minnesota.
Abstract:
Triple-negative breast cancer (TNBC) is characterized by elevated locoregional recurrence risk despite aggressive local therapies. New tumor-specific radiosensitizers are needed. We hypothesized that the ATR inhibitor, VX-970 (now known as M6620), would preferentially radiosensitize TNBC. Noncancerous breast epithelial and TNBC cell lines were investigated in clonogenic survival, cell cycle, and DNA damage signaling and repair assays. In addition, patient-derived xenograft (PDX) models generated prospectively as part of a neoadjuvant chemotherapy study from either baseline tumor biopsies or surgical specimens with chemoresistant residual disease were assessed for sensitivity to fractionated radiotherapy, VX-970, or the combination. To explore potential response biomarkers, exome sequencing was assessed for germline and/or somatic alterations in homologous recombination (HR) genes and other alterations associated with ATR inhibitor sensitivity. VX-970 preferentially inhibited ATR-Chk1-CDC25a signaling, abrogated the radiotherapy-induced G2-M checkpoint, delayed resolution of DNA double-strand breaks, and reduced colony formation after radiotherapy in TNBC cells relative to normal-like breast epithelial cells. In vivo, VX-970 did not exhibit significant single-agent activity at the dose administered even in the context of genomic alterations predictive of ATR inhibitor responsiveness, but significantly sensitized TNBC PDXs to radiotherapy. Exome sequencing and functional testing demonstrated that combination therapy was effective in both HR-proficient and -deficient models. PDXs established from patients with chemoresistant TNBC were also highly radiosensitized. In conclusion, VX-970 is a tumor-specific radiosensitizer for TNBC. Patients with residual TNBC after neoadjuvant chemotherapy, a subset at particularly high risk of relapse, may be ideally suited for this treatment intensification strategy. Mol Cancer Ther; 17(11); 2462-72. ©2018 AACR.
Insights
The ATR inhibitor VX-970 (M6620) acts as a tumor-specific radiosensitizer for triple-negative breast cancer (TNBC). This combination therapy shows promise for patients with residual TNBC after chemotherapy, enhancing treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy Research
Background:
- Triple-negative breast cancer (TNBC) has a high risk of locoregional recurrence despite current treatments.
- There is a critical need for novel tumor-specific radiosensitizers to improve TNBC outcomes.
- ATR inhibitors are being investigated for their potential to enhance cancer therapy.
Purpose of the Study:
- To evaluate the ATR inhibitor VX-970 (M6620) as a radiosensitizer specifically for TNBC.
- To assess the efficacy of VX-970 in combination with radiotherapy in preclinical TNBC models.
- To identify potential biomarkers for response to ATR inhibitor and radiotherapy combination.
Main Methods:
- In vitro studies using TNBC and noncancerous breast epithelial cell lines.
- Clonogenic survival, cell cycle, and DNA damage/repair assays were performed.
- In vivo studies utilized patient-derived xenograft (PDX) models of TNBC, including chemoresistant residual disease.
Main Results:
- VX-970 preferentially inhibited ATR-Chk1-CDC25a signaling and abrogated the G2-M checkpoint in TNBC cells.
- VX-970 delayed DNA double-strand break resolution and reduced colony formation post-radiotherapy in TNBC cells.
- Combination therapy significantly sensitized TNBC PDXs to fractionated radiotherapy, including those with chemoresistant disease.
Conclusions:
- VX-970 functions as a tumor-specific radiosensitizer for triple-negative breast cancer.
- Combination therapy with VX-970 and radiotherapy is effective in both HR-proficient and HR-deficient TNBC models.
- Patients with residual TNBC after neoadjuvant chemotherapy represent a key population for this treatment intensification strategy.
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