Generation of effective cancer vaccines genetically engineered to secrete cytokines using adenovirus-enhanced

W Schmidt1, G Maass, M Buschle

  • 1Research Institute of Molecular Pathology, Vienna, Austria. schmidt@aimp.una.ac.at

Gene
|April 29, 1997
PubMed

Insights

Genetically engineered cancer vaccines secreting IL-2 or GM-CSF cured 80% of mice with micrometastasis. These cytokine-secreting vaccines induced potent antitumor immunity by engaging antigen-presenting cells and T-cells.

Area of Science:

  • Immunology
  • Oncology
  • Biotechnology

Background:

  • Cancer vaccines aim to target novel tumor antigens, but self-originating malignant cells are poorly immunogenic.
  • Engineering tumor cells to secrete cytokines can enhance their immunogenicity and overcome immune tolerance.

Purpose of the Study:

  • To evaluate the efficacy of cytokine gene-transfected murine melanoma cells as cancer vaccines.
  • To analyze the requirements for effective antitumor vaccination using genetically modified tumor cells.

Main Methods:

  • Adenovirus-enhanced transferrinfection (AVET) was used to introduce IL-2 or GM-CSF genes into murine melanoma cells.
  • Modified tumor cells were administered as vaccines to syngeneic animals with established micrometastasis.

Main Results:

  • IL-2 or GM-CSF secreting cancer vaccines cured 80% of treated animals with subcutaneous micrometastasis.
  • These cytokine-secreting vaccines induced potent and lasting antitumor immunity.

Conclusions:

  • Genetically engineered cytokine-secreting tumor cells are highly effective cancer vaccines in preclinical models.
  • Effective antitumor immunity requires sequential steps involving antigen presentation, T-cell priming, and T-cell mediated tumor elimination.

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