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Tamoxifen resistance in breast cancer
V J Wiebe1, C K Osborne, S A Fuqua
1Department of Medicine, University of Texas Health Science Center, San Antonio 78284-7884.
Abstract:
Tamoxifen (TAM) resistance is the underlying cause of treatment failure in many breast cancer patients receiving TAM. The mechanism(s) involved in TAM resistance are poorly understood. A variety of mechanisms have been proposed but only limited evidence exists to substantiate them. Studies have now shown that in many patients TAM resistance is not related to the down regulation or loss of estrogen receptors (ER). Variant ER have been identified, but their significance clinically remains to be proven. Since breast cancer cells secrete several estrogen-regulated growth factors and growth inhibitors that may have autocrine or paracrine activity, altered growth factor production is another possible mechanism for TAM resistance. Tissue-specific transcription activating factors that may alter how the signal induced by TAM binding to the receptor is interpreted by the cell also require further investigation. An increase in antiestrogen binding sites (AEBS), which could effectively partition TAM and reduce its concentration at the ER has also been proposed as a potential mechanism. Pharmacologic mechanisms, such as a shift in metabolism toward the accumulation of estrogenic metabolites, are supported by recent data demonstrating metabolite E and bisphenol in tumors from TAM-resistant patients. Furthermore, a decrease in tumor TAM accumulation and an altered metabolite profile have been reported in TAM-resistant breast tumors grown in nude mice. These and other studies suggest that TAM resistance may be multifactorial in nature, but definitive identification of mechanisms that are operative in clinical TAM resistance requires further study.
Insights
Tamoxifen resistance in breast cancer is a complex issue, often multifactorial. Further research is needed to definitively identify the specific mechanisms driving treatment failure in patients.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Tamoxifen (TAM) resistance is a primary cause of treatment failure in breast cancer patients.
- The precise mechanisms underlying TAM resistance remain poorly understood, despite various proposed theories.
Purpose of the Study:
- To explore and summarize the potential mechanisms contributing to tamoxifen resistance in breast cancer.
- To highlight the need for further investigation into the clinical relevance of these mechanisms.
Main Methods:
- Review and synthesis of existing literature on tamoxifen resistance mechanisms.
- Analysis of proposed mechanisms including estrogen receptor (ER) variants, altered growth factor production, transcription factors, antiestrogen binding sites (AEBS), and pharmacologic factors.
Main Results:
- Tamoxifen resistance is not solely due to estrogen receptor (ER) downregulation; ER variants may play a role.
- Altered growth factor production, changes in transcription factors, increased AEBS, and altered drug metabolism (e.g., accumulation of estrogenic metabolites) are implicated.
- Studies in mice show decreased TAM accumulation and altered metabolite profiles in resistant tumors.
Conclusions:
- Tamoxifen resistance in breast cancer is likely multifactorial.
- Definitive identification of the operative mechanisms in clinical TAM resistance requires additional research.