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Abiraterone shows alternate activity in models of endocrine resistant and sensitive disease
Nikiana Simigdala1, Sunil Pancholi1, Ricardo Ribas1
1The Breast Cancer Now Toby Robins Research Centre, The Institute of Cancer Research, London, SW7 3RP, UK.
Background:
Resistance to endocrine therapy remains a major clinical problem in the treatment of oestrogen-receptor positive (ER+) breast cancer. Studies show androgen-receptor (AR) remains present in 80-90% of metastatic breast cancers providing support for blockade of AR-signalling. However, clinical studies with abiraterone, which blocks cytochrome P450 17A1 (CYP17A1) showed limited benefit.
Methods:
In order to address this, we assessed the impact of abiraterone on cell-viability, cell-death, ER-mediated transactivation and recruitment to target promoters. together with ligand-binding assays in a panel of ER+ breast cancer cell lines that were either oestrogen-dependent, modelling endocrine-sensitive disease, or oestrogen-independent modelling relapse on an aromatase inhibitor. The latter, harboured wild-type (wt) or naturally occurring ESR1 mutations.
Results:
Similar to oestrogen, abiraterone showed paradoxical impact on proliferation by stimulating cell growth or death, depending on whether the cells are hormone-dependent or have undergone prolonged oestrogen-deprivation, respectively. Abiraterone increased ER-turnover, induced ER-mediated transactivation and ER-degradation via the proteasome.
Conclusions:
Our study confirms the oestrogenic activity of abiraterone and highlights its differential impact on cells dependent on oestrogen for their proliferation vs. those that are ligand-independent and harbour wt or mutant ESR1. These properties could impact the clinical efficacy of abiraterone in breast cancer.
Insights
Abiraterone, used for breast cancer, acts like estrogen, stimulating growth in hormone-dependent cells but causing death in others. This dual effect impacts its clinical use in ER+ breast cancer.
Area of Science:
- Endocrinology
- Oncology
- Molecular Biology
Background:
- Endocrine therapy resistance is a key challenge in ER+ breast cancer.
- Androgen receptor (AR) is present in most metastatic breast cancers, suggesting AR blockade potential.
- Abiraterone (CYP17A1 inhibitor) showed limited clinical benefit despite AR presence.
Purpose of the Study:
- To investigate abiraterone's effects on ER+ breast cancer cell viability, death, and ER activity.
- To compare abiraterone's impact on oestrogen-dependent vs. oestrogen-independent ER+ cells, including those with ESR1 mutations.
Main Methods:
- Assessed cell viability, cell death, ER transactivation, and promoter recruitment.
- Utilized ligand-binding assays in ER+ breast cancer cell lines.
- Studied both oestrogen-dependent and oestrogen-independent (including ESR1 mutated) cell models.
Main Results:
- Abiraterone exhibited paradoxical effects on proliferation, similar to oestrogen.
- It stimulated growth in hormone-dependent cells and induced death in oestrogen-deprived cells.
- Abiraterone increased ER turnover, transactivation, and proteasomal degradation.
Conclusions:
- Abiraterone possesses oestrogenic activity, affecting cell proliferation differently based on hormone dependence.
- The drug's impact varies between oestrogen-dependent cells and ligand-independent cells with wild-type or mutant ESR1.
- These findings suggest implications for abiraterone's clinical efficacy in breast cancer treatment.
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