AAV2-mediated in vivo immune gene therapy of solid tumours
Sara A Collins1, Alexandra Buhles, Martina F Scallan
1Cork Cancer Research Centre, Mercy University Hospital and Leslie C, Quick Jnr, Laboratory, University College Cork, Cork, Ireland. m.tangney@ucc.ie.
Background:
Many strategies have been adopted to unleash the potential of gene therapy for cancer, involving a wide range of therapeutic genes delivered by various methods. Immune therapy has become one of the major strategies adopted for cancer gene therapy and seeks to stimulate the immune system to target tumour antigens. In this study, the feasibility of AAV2 mediated immunotherapy of growing tumours was examined, in isolation and combined with anti-angiogenic therapy.
Methods:
Immune-competent Balb/C or C57 mice bearing subcutaneous JBS fibrosarcoma or Lewis Lung Carcinoma (LLC) tumour xenografts respectively were treated by intra-tumoural administration of AAV2 vector encoding the immune up-regulating cytokine granulocyte macrophage-colony stimulating factor (GM-CSF) and the co-stimulatory molecule B7-1 to subcutaneous tumours, either alone or in combination with intra-muscular (IM) delivery of AAV2 vector encoding Nk4 14 days prior to tumour induction. Tumour growth and survival was monitored for all animals. Cured animals were re-challenged with tumourigenic doses of the original tumour type. In vivo cytotoxicity assays were used to investigate establishment of cell-mediated responses in treated animals.
Results:
AAV2-mediated GM-CSF, B7-1 treatment resulted in a significant reduction in tumour growth and an increase in survival in both tumour models. Cured animals were resistant to re-challenge, and induction of T cell mediated anti-tumour responses were demonstrated. Adoptive transfer of splenocytes to naïve animals prevented tumour establishment. Systemic production of Nk4 induced by intra-muscular (IM) delivery of Nk4 significantly reduced subcutaneous tumour growth. However, combination of Nk4 treatment with GM-CSF, B7-1 therapy reduced the efficacy of the immune therapy.
Conclusions:
Overall, this study demonstrates the potential for in vivo AAV2 mediated immune gene therapy, and provides data on the inter-relationship between tumour vasculature and immune cell recruitment.
Insights
Gene therapy using AAV2 vectors shows promise for cancer treatment by stimulating the immune system. This study found AAV2-mediated immunotherapy reduced tumor growth and improved survival, though combining it with anti-angiogenic therapy had mixed results.
Area of Science:
- Oncology
- Gene Therapy
- Immunotherapy
Background:
- Cancer gene therapy utilizes various methods to deliver therapeutic genes, with immunotherapy being a key strategy to engage the immune system against tumor antigens.
- This research investigates the feasibility of using Adeno-Associated Virus serotype 2 (AAV2) for in vivo immunotherapy against growing tumors, both independently and in conjunction with anti-angiogenic therapy.
Purpose of the Study:
- To evaluate the efficacy of AAV2-mediated immunotherapy, alone and combined with anti-angiogenic therapy, in reducing tumor growth and improving survival.
- To assess the development of anti-tumor immune responses and long-term immunity in treated animals.
Main Methods:
- Immune-competent mice with fibrosarcoma or Lewis Lung Carcinoma xenografts received intratumoral AAV2 vectors encoding granulocyte macrophage-colony stimulating factor (GM-CSF) and B7-1.
- Some groups also received intramuscular AAV2 vectors encoding Nk4, an anti-angiogenic agent, prior to tumor induction.
- Tumor growth, survival, and in vivo cytotoxicity were monitored, with cured animals re-challenged to assess immunity.
Main Results:
- AAV2-mediated GM-CSF and B7-1 treatment significantly reduced tumor growth and increased survival in both models.
- Treated animals developed T-cell mediated anti-tumor responses and were resistant to tumor re-challenge, indicating acquired immunity.
- Intramuscular delivery of AAV2-Nk4 also reduced tumor growth, but its combination with AAV2-GM-CSF/B7-1 therapy diminished the immunotherapy's effectiveness.
Conclusions:
- AAV2-mediated in vivo immune gene therapy holds significant potential for cancer treatment.
- The study highlights the complex interplay between tumor vasculature and immune cell infiltration, influencing therapeutic outcomes.
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