Oncolytic vaccines increase the response to PD-L1 blockade in immunogenic and poorly immunogenic tumors

S Feola1, C Capasso2, M Fusciello2

  • 1Dipartimento di medicina Molecolare e Biotecnologie Mediche, Universitá di Napoli Federico II, Via Pansini 5, Naples, Italy.

Oncoimmunology
|September 18, 2018
PubMed

Insights

Combining PeptiCRAd, an oncolytic vaccine, with anti-PD-L1 therapy enhances anti-tumor immunity. This strategy improves responses to checkpoint inhibitors in both immunogenic and non-immunogenic tumors, increasing complete remission rates.

Area of Science:

  • Oncology
  • Immunology
  • Virology

Background:

  • Tumor immunological escape is driven by immune checkpoint pathways and limited T-cell infiltration.
  • Current immune checkpoint inhibitors show limited response rates due to insufficient tumor-specific T-cells.
  • Novel combinatorial strategies are essential to improve the efficacy of immune checkpoint inhibitors.

Purpose of the Study:

  • To evaluate PeptiCRAd, an oncolytic vaccine platform, for enhancing responses to checkpoint inhibitors.
  • To assess the combination therapy in highly and poorly immunogenic tumor models, including melanoma and triple-negative breast cancer (TNBC).
  • To validate the strategy in a translational in vitro model using human PBMCs and tumor cell lines.

Main Methods:

  • Utilized PeptiCRAd, an oncolytic vaccine, in combination with anti-PD-L1 therapy.
  • Tested the combination in melanoma and triple-negative breast cancer (TNBC) mouse models.
  • Employed an in vitro model with HLA-matched human PBMCs and tumor cell lines for translational validation.

Main Results:

  • Combination therapy significantly reduced melanoma growth and increased response rates to checkpoint inhibition, including complete responses.
  • The approach fostered non-exhausted antigen-specific T-cells within tumors compared to anti-PD-L1 monotherapy.
  • Targeting both MHC-I and II epitopes alongside PD-L1 blockade was crucial for reducing 4T1 TNBC tumor growth and increasing responders.

Conclusions:

  • Oncolytic virus-based cancer vaccines combined with checkpoint blockade significantly improve treatment responses.
  • This strategy is effective in both immunogenic and non-immunogenic tumors, offering a promising approach for cancer immunotherapy.
  • The combination therapy promotes a more robust and effective anti-tumor immune response.

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