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Th1 cytokines sensitize HER-expressing breast cancer cells to lapatinib
Loral E Showalter1, Crystal Oechsle1, Nirmala Ghimirey1
1Department of Biological Sciences, Kent State University, Kent, OH, United States of America.
Abstract:
The HER family of receptor tyrosine kinases has been linked to deregulation of growth and proliferation for multiple types of cancer. Members have therefore become thefocus of many drug and immune-based therapy innovations. The targeted anti-cancer agent, lapatinib, is a small molecule inhibitor that directly interferes with EGFR (HER-1)and HER-2 signaling, and indirectly reduces HER-3 signaling, thus suppressing important downstream events. A recently-developed dendritic cell-based vaccine against early breast cancer (ductal carcinoma in situ; DCIS) that generates strong Th1-dominated immunity against HER-2 has induced pathologic complete response in about one-third of immunized individuals. In vitro studies suggested cytokines secreted by Th1 cells could be major contributors to the vaccine effects including induction of apoptosis and suppression of HER expression. With a view toward improving complete response rates, we investigated whether the principle Th1 cytokines (IFN-γ and TNF-α) could act in concert with lapatinib to suppress activity of breast cancer lines in vitro. Lapatinib-sensitive SKBR3, MDA-MB-468 and BT474 cells were incubated with Th1 cytokines, lapatinib, or both. It was found that combined treatment maximized metabolic suppression(Alamar Blue assay), as well as cell death (Trypan Blue) and apoptosis(Annexin V/Propidium Iodide and TMRE staining). Combined drug plus cytokine treatment also maximized suppression of both total and phosphorylated forms of HER-2 and HER-3. Interestingly, when lapatinib resistant lines MDA-MB-453 and JIMT-1 were tested, it was found that the presence of Th1 cytokines appeared to enhance sensitivity for lapatinib-induced metabolic suppression and induction of apoptotic cell death, nearly abrogating drug resistance. These studies provide pre-clinical data suggesting the possibility that targeted drug therapy may be combined with vaccination to enhance anti-cancer effects, and furthermore that robust immunity in the form of secreted Th1 cytokines may have the capacity to mitigate resistance to targeted drugs.
Insights
Combining the targeted cancer drug lapatinib with Th1 cytokines enhances anti-cancer effects and overcomes drug resistance in breast cancer models. This approach may improve treatment outcomes by boosting immune responses.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- The HER family of receptor tyrosine kinases (e.g., HER-2) is crucial in various cancers, driving growth and proliferation.
- Targeted therapies like lapatinib inhibit HER signaling, while HER-2 vaccines aim to generate anti-cancer immunity.
- Th1 cytokines secreted by immune cells may contribute to vaccine efficacy by inducing apoptosis and suppressing HER expression.
Purpose of the Study:
- To investigate the synergistic effects of Th1 cytokines (IFN-γ and TNF-α) combined with lapatinib on breast cancer cell lines.
- To determine if this combination therapy can overcome lapatinib resistance in certain breast cancer models.
Main Methods:
- Lapatinib-sensitive and resistant breast cancer cell lines were treated with Th1 cytokines, lapatinib, or both.
- Cell viability, metabolic activity, apoptosis, and HER-2/HER-3 signaling were assessed using various assays (Alamar Blue, Trypan Blue, Annexin V/PI, TMRE, Western blotting).
Main Results:
- Combined treatment with Th1 cytokines and lapatinib significantly enhanced metabolic suppression, cell death, and apoptosis in lapatinib-sensitive cells.
- The combination therapy maximally suppressed total and phosphorylated HER-2 and HER-3 levels.
- In lapatinib-resistant cell lines, Th1 cytokines appeared to restore sensitivity to lapatinib, mitigating drug resistance.
Conclusions:
- Pre-clinical data suggest that combining targeted therapy (lapatinib) with immune-based strategies (Th1 cytokines) can enhance anti-cancer effects.
- Robust Th1-mediated immunity may play a role in overcoming resistance to targeted anti-cancer drugs.
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