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Updated: Mar 17, 2026

Orthotopic Transplantation of Breast Tumors as Preclinical Models for Breast Cancer
Published on: May 18, 2020
Effective combination therapies in preclinical endocrine resistant breast cancer models harboring ER mutations
Brendon Ladd1, Anne Marie Mazzola1, Teeru Bihani1
1Oncology iMed, AstraZeneca, Gatehouse Park, Waltham, MA, USA.
Abstract:
Although endocrine therapy is successfully used to treat patients with estrogen receptor (ER) positive breast cancer, a substantial proportion of this population will relapse. Several mechanisms of acquired resistance have been described including activation of the mTOR pathway, increased activity of CDK4 and activating mutations in ER. Using a patient derived xenograft model harboring a common activating ER ligand binding domain mutation (D538G), we evaluated several combinatorial strategies using the selective estrogen receptor degrader (SERD) fulvestrant in combination with chromatin modifying agents, and CDK4/6 and mTOR inhibitors. In this model, fulvestrant binds WT and MT ER, reduces ER protein levels, and downregulated ER target gene expression. Addition of JQ1 or vorinostat to fulvestrant resulted in tumor regression (41% and 22% regression, respectively) though no efficacy was seen when either agent was given alone. Interestingly, although the CDK4/6 inhibitor palbociclib and mTOR inhibitor everolimus were efficacious as monotherapies, long-term delayed tumor growth was only observed when co-administered with fulvestrant. This observation was consistent with a greater inhibition of compensatory signaling when palbociclib and everolimus were co-dosed with fulvestrant. The addition of fulvestrant to JQ1, vorinostat, everolimus and palbociclib also significantly reduced lung metastatic burden as compared to monotherapy. The combination potential of fulvestrant with palbociclib or everolimus were confirmed in an MCF7 CRISPR model harboring the Y537S ER activating mutation. Taken together, these data suggest that fulvestrant may have an important role in the treatment of ER positive breast cancer with acquired ER mutations.
Insights
This study shows that combining fulvestrant with other therapies can overcome endocrine resistance in estrogen receptor (ER) positive breast cancer, reducing tumor growth and metastasis. These findings highlight fulvestrant
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Endocrine therapy is standard for ER-positive breast cancer but acquired resistance limits efficacy.
- Mechanisms of resistance include mTOR pathway activation, CDK4 activity, and ER mutations.
Purpose of the Study:
- To evaluate combinatorial strategies using fulvestrant to overcome acquired resistance in ER-positive breast cancer.
- To investigate the efficacy of fulvestrant combined with chromatin modifiers, CDK4/6 inhibitors, and mTOR inhibitors.
Main Methods:
- Utilized patient-derived xenograft and MCF7 CRISPR models with common ER mutations (D538G, Y537S).
- Assessed combinations of fulvestrant with JQ1, vorinostat, palbociclib, and everolimus.
- Evaluated tumor regression, tumor growth delay, and lung metastatic burden.
Main Results:
- Fulvestrant combined with JQ1 or vorinostat showed significant tumor regression.
- Fulvestrant combined with palbociclib or everolimus demonstrated long-term tumor growth delay and reduced metastasis.
- Combinations improved efficacy compared to monotherapies, particularly in models with ER mutations.
Conclusions:
- Fulvestrant combinations effectively overcome acquired resistance in ER-positive breast cancer models with ER mutations.
- Fulvestrant may play a crucial role in treating patients with ER-positive breast cancer that has developed resistance.
- Targeting resistance mechanisms with combination therapies offers a promising therapeutic strategy.
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