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Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
Reovirus-induced cell-mediated immunity for the treatment of multiple myeloma within the resistant bone marrow niche
Louise M E Müller1, Gemma Migneco1, Gina B Scott1
1Division of Haematology and Immunology, Leeds Institute of Medical Research, University of Leeds, Leeds, UK.
Background:
Multiple myeloma (MM) remains an incurable disease and oncolytic viruses offer a well-tolerated addition to the therapeutic arsenal. Oncolytic reovirus has progressed to phase I clinical trials and its direct lytic potential has been extensively studied. However, to date, the role for reovirus-induced immunotherapy against MM, and the impact of the bone marrow (BM) niche, have not been reported.
Methods:
This study used human peripheral blood mononuclear cells from healthy donors and in vitro co-culture of MM cells and BM stromal cells to recapitulate the resistant BM niche. Additionally, the 5TGM1-Kalw/RijHSD immunocompetent in vivo model was used to examine reovirus efficacy and characterize reovirus-induced immune responses in the BM and spleen following intravenous administration. Collectively, these in vitro and in vivo models were used to characterize the development of innate and adaptive antimyeloma immunity following reovirus treatment.
Results:
Using the 5TGM1-Kalw/RijHSD immunocompetent in vivo model we have demonstrated that reovirus reduces both MM tumor burden and myeloma-induced bone disease. Furthermore, detailed immune characterization revealed that reovirus: (i) increased natural killer (NK) cell and CD8+ T cell numbers; (ii) activated NK cells and CD8+ T cells and (iii) upregulated effector-memory CD8+ T cells. Moreover, increased effector-memory CD8+ T cells correlated with decreased tumor burden. Next, we explored the potential for reovirus-induced immunotherapy using human co-culture models to mimic the myeloma-supportive BM niche. MM cells co-cultured with BM stromal cells displayed resistance to reovirus-induced oncolysis and bystander cytokine-killing but remained susceptible to killing by reovirus-activated NK cells and MM-specific cytotoxic T lymphocytes.
Conclusion:
These data highlight the importance of reovirus-induced immunotherapy for targeting MM cells within the BM niche and suggest that combination with agents which boost antitumor immune responses should be a priority.
Insights
Oncolytic reovirus immunotherapy effectively reduces multiple myeloma tumor burden and bone disease by boosting natural killer and CD8+ T cell responses. This approach shows promise for overcoming the protective bone marrow niche in treating this incurable cancer.
Area of Science:
- Immunology
- Oncology
- Virology
Background:
- Multiple myeloma (MM) is an incurable hematologic malignancy.
- Oncolytic viruses, such as reovirus, are a potential therapeutic strategy for MM.
- The role of reovirus-induced immunotherapy and the impact of the bone marrow (BM) niche in MM remain underexplored.
Purpose of the Study:
- To investigate the efficacy of oncolytic reovirus in reducing MM tumor burden and bone disease.
- To characterize reovirus-induced innate and adaptive immune responses within the BM niche.
- To assess the potential of reovirus-based immunotherapy against MM in a supportive BM microenvironment.
Main Methods:
- Utilized in vitro co-culture models of MM cells and BM stromal cells to mimic the resistant BM niche.
- Employed the 5TGM1-Kalw/RijHSD immunocompetent in vivo model for efficacy and immune response studies.
- Administered reovirus intravenously and analyzed immune cell populations (NK cells, CD8+ T cells) in the BM and spleen.
Main Results:
- Reovirus treatment significantly reduced MM tumor burden and myeloma-induced bone disease in vivo.
- Reovirus administration increased and activated natural killer (NK) cells and CD8+ T cells, including effector-memory CD8+ T cells.
- Increased effector-memory CD8+ T cells correlated with decreased tumor burden; MM cells in BM co-cultures were susceptible to reovirus-activated immune cells.
Conclusions:
- Reovirus-induced immunotherapy is crucial for targeting MM cells within the bone marrow niche.
- Combination therapies involving agents that enhance antitumor immune responses are recommended for MM treatment.
- These findings support further development of reovirus as an immunotherapeutic agent for multiple myeloma.
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