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Published on: May 18, 2020
Efficacy of SERD/SERM Hybrid-CDK4/6 Inhibitor Combinations in Models of Endocrine Therapy-Resistant Breast Cancer
Suzanne E Wardell1, Matthew J Ellis2, Holly M Alley1
1Department of Pharmacology and Cancer Biology Duke University School of Medicine Durham, NC 27710.
Purpose:
Endocrine therapy, using tamoxifen or an aromatase inhibitor, remains first-line therapy for the management of estrogen receptor (ESR1)-positive breast cancer. However, ESR1 mutations or other ligand-independent ESR1 activation mechanisms limit the duration of response. The clinical efficacy of fulvestrant, a selective estrogen receptor downregulator (SERD) that competitively inhibits agonist binding to ESR1 and triggers receptor downregulation, has confirmed that ESR1 frequently remains engaged in endocrine therapy-resistant cancers. We evaluated the activity of a new class of selective estrogen receptor modulators (SERM)/SERD hybrids (SSH) that downregulate ESR1 in relevant models of endocrine-resistant breast cancer. Building on the observation that concurrent inhibition of ESR1 and the cyclin-dependent kinases 4 and 6 (CDK4/6) significantly increased progression-free survival in advanced patients, we explored the activity of different SERD- or SSH-CDK4/6 inhibitor combinations in models of endocrine therapy-resistant ESR1(+) breast cancer.
Experimental Design:
SERDs, SSHs, and the CDK4/6 inhibitor palbociclib were evaluated as single agents or in combination in established cellular and animal models of endocrine therapy-resistant ESR1(+) breast cancer.
Results:
The combination of palbociclib with a SERD or an SSH was shown to effectively inhibit the growth of MCF7 cell or ESR1-mutant patient-derived tumor xenografts. In tamoxifen-resistant MCF7 xenografts, the palbociclib/SERD or SSH combination resulted in an increased duration of response as compared with either drug alone.
Conclusions:
A SERD- or SSH-palbociclib combination has therapeutic potential in breast tumors resistant to endocrine therapies or those expressing ESR1 mutations. See related commentary by DeMichele and Chodosh, p. 4999.
Insights
Combining selective estrogen receptor downregulators (SERDs) or novel hybrids (SSH) with CDK4/6 inhibitors shows promise for endocrine-resistant estrogen receptor-positive breast cancer.
Area of Science:
- Oncology
- Endocrinology
- Pharmacology
Background:
- Estrogen receptor (ESR1)-positive breast cancer is primarily treated with endocrine therapy.
- Resistance to endocrine therapy, driven by ESR1 mutations or other activation mechanisms, limits treatment efficacy.
- Selective estrogen receptor downregulators (SERDs) and novel selective estrogen receptor modulators (SERM)/SERD hybrids (SSH) target ESR1, showing activity in resistant cancers.
Purpose of the Study:
- To evaluate the therapeutic potential of SERD- or SSH-CDK4/6 inhibitor combinations in endocrine-resistant ESR1-positive breast cancer models.
- To build upon the established efficacy of combined ESR1 and CDK4/6 inhibition in advanced breast cancer.
Main Methods:
- Utilized established cellular and animal models of endocrine therapy-resistant ESR1-positive breast cancer.
- Assessed the efficacy of SERDs, SSHs, and the CDK4/6 inhibitor palbociclib as single agents and in various combinations.
Main Results:
- The combination of palbociclib with either a SERD or an SSH effectively inhibited tumor growth in both MCF7 cell xenografts and ESR1-mutant patient-derived xenografts.
- In tamoxifen-resistant MCF7 xenografts, palbociclib combined with a SERD or SSH demonstrated a prolonged duration of response compared to monotherapy.
Conclusions:
- SERD-palbociclib or SSH-palbociclib combinations represent a promising therapeutic strategy for breast tumors resistant to endocrine therapies.
- These combinations may also be effective in treating breast tumors with ESR1 mutations.
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