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Cellular and molecular pharmacology of antiestrogen action and resistance
R Clarke1, F Leonessa, J N Welch
1Vincent T. Lombardi Cancer Center, Georgetown University School of Medicine, Washington, DC 20007, USA. clarker@gunet.georgetown.edu
Abstract:
Antiestrogen therapy remains one of the most widely used and effective treatments for the management of endocrine responsive breast cancers. This reflects the ability of antiestrogens to compete with estrogens for binding to estrogen receptors. Whereas response rates of up to 70% are reported in patients with tumors expressing estrogen and progesterone receptors, most responsive tumors will eventually acquire resistance. The most important factor in de novo resistance is lack of expression of these receptors. However, the mechanisms driving resistance in tumors that express estrogen and/or progesterone receptors are unclear. A tamoxifen-stimulated phenotype has been described, but seems to occur only in a minority of patients. Most tumors (>80%) may become resistant through other, less well defined, resistance mechanisms. These may be multifactorial, including changes in immunity, host endocrinology, and drug pharmacokinetics. Significant changes within the tumor cells may also occur, including alterations in the ratio of the estrogen receptor alpha:beta forms and/or other changes in estrogen receptor-driven transcription complex function. These may lead to perturbations in the gene network signaling downstream of estrogen receptors. Cells may also alter paracrine and autocrine growth factor interactions, potentially producing a ligand-independent activation of estrogen receptors by mitogen-activated protein kinases. Antiestrogens can affect the function of intracellular proteins and signaling that may, or may not, involve estrogen receptor-mediated events. These include changes in oxidative stress responses, specific protein kinase C isoform activation, calmodulin function, and cell membrane structure/function.
Insights
Antiestrogen therapy is effective for endocrine-responsive breast cancers but resistance develops. Mechanisms of resistance in estrogen receptor-positive tumors are complex and multifactorial, involving tumor cell changes and external factors.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Antiestrogen therapy is a cornerstone treatment for endocrine-responsive breast cancers.
- While effective, many tumors eventually develop resistance to antiestrogen drugs.
- Tumor resistance mechanisms in estrogen and/or progesterone receptor-positive cancers are not fully understood.
Purpose of the Study:
- To explore the unclear mechanisms of antiestrogen resistance in endocrine-responsive breast cancers.
- To investigate factors contributing to resistance beyond receptor expression status.
- To understand the molecular and cellular changes associated with treatment failure.
Main Methods:
- Review of existing literature on antiestrogen therapy and resistance mechanisms.
- Analysis of potential multifactorial causes including immunity, endocrinology, and pharmacokinetics.
- Examination of intracellular changes within tumor cells, such as estrogen receptor dynamics and signaling pathways.
Main Results:
- De novo resistance is primarily linked to lack of estrogen and progesterone receptor expression.
- In tumors with receptor expression, resistance mechanisms are diverse and less defined, affecting over 80% of cases.
- Tumor cell alterations include changes in estrogen receptor alpha:beta ratios, transcription complex function, and growth factor interactions.
Conclusions:
- Antiestrogen resistance is a complex issue driven by multifactorial mechanisms.
- Understanding these mechanisms is crucial for developing strategies to overcome or prevent resistance.
- Further research is needed to elucidate the precise pathways involved in antiestrogen therapy failure.