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Published on: February 16, 2015
Chemotherapy Can Synergize With Adoptive Immunotherapy to Inhibit Medulloblastoma Growth
Joseph L Lasky1, Kathryn L Bradford2, Yuntao Wang2
1The Lundquist Institute for Biomedical Innovation at Harbor-UCLA Medical Center, Torrance, CA, U.S.A. jlasky@cure4thekids.org.
Background/Aim:
In the age of ever-increasing developments in targeted cancer treatments, new immune-based approaches for brain tumor therapy represent an attractive avenue. Despite encouraging pre-clinical data, results in patients have been sub-optimal, likely due to tumor-induced immune suppression and intrinsic resistance to immune attack. Chemotherapy and biologic agents may be able to disrupt these mechanisms and restore tumor sensitivity to immune attack. In this study, we explore whether a combination of gemcitabine and rapamycin can sensitize medulloblastoma cells to immunotherapy in vitro and in vivo.
Materials And Methods:
With the commercial medulloblastoma cell line, Daoy, we explored the concentrations of combinations of Gemcitabine with rapamycin needed to induce cytotoxicity. Next, we used flow cytometry to assess the cytotoxicity of chemotherapy-treated Daoy cells with the addition of anti-tumor T-cells, generated from naive T-cells stimulated in the presence of Daoy lysate-pulsed dendritic cells. Then, we examined the efficacy of chemotherapy alone versus chemotherapy plus immunotherapy in tumor growth inhibition of subcutaneous medulloblastoma xenografts.
Results:
Rapamycin alone at <1,000 nM had moderate activity against Daoy cells in vitro and IC50 was >1,000 nM. Gemcitabine had a 3-day IC50 alone of 10 nM but in combination with 100 nM rapamycin, it decreased to 1 nM, suggesting increased cytotoxicity with combined therapy. Stimulated T-cells mediated in-vitro cytotoxicity, although background cytotoxicity of unstimulated "naïve" T-cells was also significant. Finally, established subcutaneous Daoy cell xenografts in SCID mice were treated with chemotherapy alone or chemotherapy plus adoptive immunotherapy (stimulated and non-stimulated). Gemcitabine and rapamycin alone significantly slowed tumor growth, but the addition of immunotherapy further augmented inhibition.
Conclusion:
Combining immunotherapy and chemo-biologic therapy inhibit medulloblastoma cell and xenograft growth, and may offer an effective treatment for patients with medulloblastoma.
Insights
Combining gemcitabine and rapamycin chemotherapy with immunotherapy shows promise for treating medulloblastoma. This combined approach enhances anti-tumor T-cell activity and inhibits tumor growth in preclinical models.
Area of Science:
- Oncology
- Immunotherapy
- Cancer Biology
Background:
- Targeted cancer therapies and immune-based approaches are advancing for brain tumors.
- Clinical success has been limited by tumor-induced immune suppression and resistance.
- Chemotherapy and biologic agents may overcome these resistance mechanisms.
Purpose of the Study:
- To investigate if gemcitabine and rapamycin can sensitize medulloblastoma cells to immunotherapy.
- To evaluate the combined efficacy of chemotherapy and immunotherapy in vitro and in vivo.
Main Methods:
- Assessed cytotoxicity of gemcitabine and rapamycin combinations on Daoy medulloblastoma cells.
- Used flow cytometry to evaluate T-cell-mediated cytotoxicity against chemotherapy-treated cells.
- Examined tumor growth inhibition in subcutaneous medulloblastoma xenografts using chemotherapy alone versus combined therapy and immunotherapy.
Main Results:
- Gemcitabine combined with rapamycin significantly increased cytotoxicity against Daoy cells in vitro.
- Immunotherapy augmented the anti-tumor effects of chemotherapy in established medulloblastoma xenografts.
- Combined gemcitabine, rapamycin, and immunotherapy demonstrated significant tumor growth inhibition.
Conclusions:
- Combination therapy of immunotherapy with gemcitabine and rapamycin inhibits medulloblastoma cell and xenograft growth.
- This combined approach may represent an effective treatment strategy for medulloblastoma patients.
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