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Improving Response to Hormone Therapy in Breast Cancer: New Targets, New Therapeutic Options
Hope S Rugo1, Neelima Vidula1, Cynthia Ma1
1From the UCSF Helen Diller Family Comprehensive Cancer Center, San Francisco, CA; University of San Francisco School of Medicine, San Francisco, CA; Department of Medicine, Washington University School of Medicine in St. Louis, St. Louis, MO.
Abstract:
The majority of breast cancer expresses the estrogen and or progesterone receptors (ER and PR). In tumors without concomitant HER2 amplification, hormone therapy is a major treatment option for all disease stages. Resistance to hormonal therapy is associated with disease recurrence and progression. Recent studies have identified a number of resistance mechanisms leading to estrogen-independent growth of hormone receptor-positive (HR+) breast cancer as a result of genetic and epigenetic alterations, which could be exploited as novel therapeutic targets. These include acquired mutations in ER-alpha (ESR1) in response to endocrine deprivation; constitutive activation of cyclin-dependent kinases (CDK) 4 and 6; cross talk between ER and growth factor receptor signaling such as HER family members, fibroblast growth factor receptor (FGFR) pathways, intracellular growth, and survival signals PI3K/Akt/mTOR; and epigenetic modifications by histone deacetylase (HDAC) as well as interactions with tumor microenvironment and host immune response. Inhibitors of these pathways are being developed to improve efficacy of hormonal therapy for treatment of both metastatic and early-stage disease. Two agents are currently approved in the United States for the treatment of metastatic HR+ breast cancer, including the mTOR inhibitor everolimus and the CDK4/6 inhibitor palbociclib. Management of toxicity is a critical aspect of treatment; the primary toxicity of everolimus is stomatitis (treated with topical steroids) and of palbociclib is neutropenia (treated with dose reduction/delay). Many agents are in clinical trials, primarily in combination with hormone therapy; novel combinations are under active investigation.
Insights
Hormone therapy is key for ER/PR-positive breast cancer, but resistance can lead to recurrence. Understanding resistance mechanisms and targeting pathways like CDK4/6 offers new treatment strategies.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Most breast cancers express estrogen and/or progesterone receptors (ER/PR).
- Hormone therapy is a primary treatment for ER/PR-positive, HER2-negative breast cancer.
- Resistance to hormone therapy is a major cause of disease recurrence and progression.
Purpose of the Study:
- To review mechanisms of resistance to hormone therapy in ER/PR-positive breast cancer.
- To highlight novel therapeutic targets and agents being developed to overcome resistance.
- To discuss current treatment options and toxicity management for metastatic HR+ breast cancer.
Main Methods:
- Review of recent studies on endocrine resistance mechanisms in breast cancer.
- Identification of genetic and epigenetic alterations contributing to estrogen-independent growth.
- Analysis of targeted therapies and clinical trial data for HR+ breast cancer.
Main Results:
- Key resistance mechanisms include ESR1 mutations, CDK4/6 activation, growth factor receptor crosstalk (HER, FGFR), PI3K/Akt/mTOR signaling, and epigenetic modifications.
- Targeted inhibitors are in development to enhance hormone therapy efficacy.
- Everolimus (mTOR inhibitor) and palbociclib (CDK4/6 inhibitor) are approved for metastatic HR+ breast cancer.
Conclusions:
- Understanding resistance pathways is crucial for improving hormone therapy outcomes.
- Targeted therapies, particularly CDK4/6 inhibitors, show promise in overcoming resistance.
- Management of treatment-related toxicities, such as stomatitis and neutropenia, is essential for patient care.
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