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Overcoming Resistance to Endocrine Therapy in Breast Cancer: New Approaches to a Nagging Problem
Yunus A Luqmani1, Nada Alam-Eldin
1Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Kuwait University, Safat, Kuwait.
Abstract:
In the majority of women, breast cancer progresses through increased transcriptional activity due to over-expressed oestrogen receptors (ER). Therapeutic strategies include: (i) reduction of circulating ovarian oestrogens or of peripherally produced oestrogen (in postmenopausal women) with aromatase inhibitors and (ii) application of selective ER modulators for receptor blockade. The success of these interventions is limited by the variable but persistent onset of acquired resistance and by an intrinsic refractiveness which manifests despite adequate levels of ER in about 50% of patients with advanced metastatic disease. Loss of functional ER leads to endocrine insensitivity, loss of cellular adhesion and polarity, and increased migratory potential due to trans-differentiation of the epithelial cancer cells into a mesenchymal-like phenotype (epithelial-mesenchymal transition; EMT). Multiple mechanisms contributing to therapeutic failure have been proposed: (i) loss or modification of ER expression including epigenetic mechanisms, (ii) agonistic actions of selective ER modulators that may be enhanced through an increased expression of co-activators, (iii) attenuation of the tamoxifen metabolism through expression of genetic variants of P450 cytochromes which leads to more or less active metabolites and (iv) increased growth factor signalling particularly through epidermal growth factor receptor activation of pathways involving keratinocyte growth factor, platelet-derived growth factor, and nuclear factor x03BA;B. In addition, the small non-coding microRNAs, recently recognized as critical gene regulators, exhibit differential expression in tamoxifen-sensitive versus resistant cell lines. Several studies suggest the potential of using these either as targets or as therapeutic agents to modulate EMT regulators as a means of reversing the aggressive metastatic phenotype by reversal of the EMT, with the added benefit of re-sensitization to anti-oestrogens.
Insights
Oestrogen receptor (ER) targeted breast cancer therapies face resistance due to mechanisms like epithelial-mesenchymal transition (EMT). MicroRNAs offer potential to reverse EMT and re-sensitize tumors to anti-oestrogen treatments.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Breast cancer often relies on oestrogen receptor (ER) activity for progression.
- Current therapies like aromatase inhibitors and selective ER modulators are limited by intrinsic and acquired resistance.
- Loss of ER function drives endocrine insensitivity and promotes epithelial-mesenchymal transition (EMT), increasing metastatic potential.
Purpose of the Study:
- To explore mechanisms of resistance to endocrine therapies in ER-positive breast cancer.
- To investigate the role of epithelial-mesenchymal transition (EMT) in therapeutic failure.
- To evaluate the potential of microRNAs in overcoming endocrine resistance and reversing EMT.
Main Methods:
- Analysis of ER expression and function in breast cancer.
- Investigation of molecular pathways involved in therapeutic resistance, including EMT.
- Differential expression analysis of microRNAs in tamoxifen-sensitive versus resistant cell lines.
Main Results:
- Resistance mechanisms include ER modification, co-activator expression, altered tamoxifen metabolism, and growth factor signaling.
- Epithelial-mesenchymal transition (EMT) is a key factor in endocrine insensitivity and metastasis.
- MicroRNAs show differential expression and potential as therapeutic targets or agents to reverse EMT.
Conclusions:
- Understanding resistance mechanisms is crucial for improving breast cancer treatment outcomes.
- Targeting EMT regulators, potentially via microRNAs, may reverse aggressive phenotypes.
- Reversing EMT could restore sensitivity to anti-oestrogen therapies, offering new treatment avenues.
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