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Glyceollins Trigger Anti-Proliferative Effects in Hormone-Dependent Aromatase-Inhibitor-Resistant Breast Cancer Cells
Rashidra R Walker1, Jankiben R Patel1, Akash Gupta2
1Division of Basic Sciences, College of Pharmacy and Pharmaceutical Sciences, Florida A&M University, 1415 S. Martin L. King Jr. Blvd., Tallahassee, FL 32307, USA.
Abstract:
Aromatase inhibitors (AIs) are standard treatment for estrogen-dependent postmenopausal breast tumors; however, resistance develops leading to tumor relapse and metastasis. We previously demonstrated that glyceollin inhibits proliferation, survival, and migration of hormone-independent letrozole-resistant breast cancer. Since many AI-resistant tumors remain hormone-dependent, identifying distinctions between estrogen-receptor-positive (ER+) and ER-negative (ER-) AI-resistant tumor response to therapy is critical. We hypothesize that treating ER+ letrozole-resistant T47D breast cancer cells (T47DaromLR) with a combination of 10 μM glyceollin and 0.5 μM lapatinib (a dual EGFR/HER2 inhibitor) will decrease cell proliferation through induction of apoptosis. The T47DaromLR cells were found to overexpress HER2 and MAPK while maintaining aromatase and ER levels compared to their letrozole-sensitive (T47Darom) counterparts. In the absence of estrogen stimulation, glyceollin ± lapatinib had no effect on the proliferation of the T47Darom cells, while glyceollin treatment caused 46% reduction in the proliferation of T47DaromLR cells, which was further diminished when combined with lapatinib. While neither agent influenced cell migration, glyceollin and lapatinib reduced S and G2/M phase cell entry and exclusively induced apoptosis by 1.29-fold in the T47DaromLR cells. Taken together, these results suggest that glyceollins and lapatinib may have potential as a novel combination therapeutic approach for hormone-dependent, letrozole-resistant tumors.
Insights
Glyceollin and lapatinib combination therapy shows promise for hormone-dependent, letrozole-resistant breast cancer. This treatment reduced cell proliferation and induced apoptosis in resistant cancer cells.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Aromatase inhibitors (AIs) are standard for estrogen-dependent breast cancer but resistance leads to relapse.
- Glyceollin inhibits proliferation, survival, and migration in hormone-independent resistant breast cancer.
- Understanding ER+ vs. ER- AI-resistant tumor response is critical for effective therapy.
Purpose of the Study:
- To investigate the combined effect of glyceollin and lapatinib on ER+ letrozole-resistant T47D breast cancer cells (T47DaromLR).
- To determine if this combination decreases cell proliferation through apoptosis induction.
Main Methods:
- T47DaromLR cells were treated with glyceollin and lapatinib.
- Cell proliferation, migration, and cell cycle phases were analyzed.
- Apoptosis induction was quantified.
Main Results:
- Glyceollin alone reduced T47DaromLR cell proliferation by 46%, with further reduction when combined with lapatinib.
- The combination therapy reduced S and G2/M phase cell entry.
- Glyceollin and lapatinib exclusively induced apoptosis by 1.29-fold in T47DaromLR cells.
Conclusions:
- Glyceollin and lapatinib demonstrate potential as a novel combination therapeutic for hormone-dependent, letrozole-resistant breast tumors.
- The combination effectively reduces proliferation and induces apoptosis in resistant cells.
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