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April 23, 2026Case Reports in Oncology0 citationsOpen Access

Use of Next Generation Sequencing for Highly Endocrine-Sensitive Metastatic Breast Cancer to Inform Late-Phase Treatments with Sustained Response: A Case Report.

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LBLeyla BayatMMMargaret McCabeSCSergey Cherneykin

Key Points

  • To explore the impact of next generation sequencing on late-phase treatment strategies for metastatic breast cancer.
  • Presented a case of a postmenopausal woman with recurrent metastatic breast cancer after initial treatment.
  • Utilized next generation sequencing to identify targetable mutations over the course of her treatment.
  • Monitored response to targeted therapies and changes in mutational profile through repeat sequencing.
  • The patient showed sustained response to endocrine therapy and later to targeted therapy based on identified mutations.
  • Next generation sequencing revealed actionable mutations, including NRG1 NTRK fusion and KRAS G12C.
  • The case underscores the benefit of repeating NGS late in treatment, even though the patient did not survive to receive new therapies.

Abstract

Introduction: Biomarker profiling has long been a cornerstone in the treatment of both early-stage and metastatic breast cancer. Immunohistochemical staining for estrogen receptor (ER), progesterone receptor (PR), and human epidermal growth factor receptor 2 (HER-2) expression continue to form the foundation of our understanding of breast cancer prognosis and optimal treatment. Over the past decade, next generation sequencing (NGS) has expanded our capacity to prevent disease progression through new mutational targets. Case Presentation: We present the case of a postmenopausal woman who, twelve years after initial diagnosis with locally advanced ER+, PR+ and HER-2- breast cancer, developed recurrent metastatic disease. Control of disease progression over the following fifteen years was attained through her cancer’s uniquely prolonged sensitivity to endocrine therapy and, later in her disease course, by the discovery of multiple targetable mutations through NGS. She had a sustained response to both the inhibition of PIK3CA and, later, the inhibition of ESR1. Repeat NGS late in her treatment revealed new NRG1 NTRK fusion and KRAS G12C mutations. Our patient succumbed to her disease before subsequent targeted therapy could be initiated. Conclusion: Our patient’s treatment course was significantly influenced by repetitive NGS informing her treatment with novel targeted therapies, with detection of emerging actionable mutations rarely seen in breast cancer toward the end of her life. This observation highlights the potential clinical benefit of repeating NGS even in late stages of breast cancer treatment. Furthermore, NGS may expand our ability to utilize targeted agents in not only early phase but also later phase breast cancer treatment.

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Cite This Study

Bayat et al. (2026) studied this question.

synapsesocial.com/papers/69e9b80e85696592c86eb7d1https://doi.org/10.1159/000552044
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