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.

Abstract

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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