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Dual but not single PD-1 or TIM-3 blockade enhances oncolytic virotherapy in refractory lung cancer
Fan Sun1,2, Zong Sheng Guo1,3, Alyssa D Gregory4
1UPMC Hillman Cancer Center, University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania, USA.
Background:
Programmed cell death 1 (PD-1)/programmed death ligand 1 (PD-L1) blockade therapy fails in the majority of patients with cancer. Oncolytic viruses represent a new class of therapeutic agents, yet the therapeutic efficacy is still disappointing. Moreover, intratumoral injection of viruses is the main approach and preclinical studies mainly employ syngeneic or xenograft models.
Methods:
Use an endogenous mouse lung cancer model that faithfully recapitulates human lung cancer, and various in vivo, ex vivo and in vitro assays, to investigate the efficacy, mechanism of action and resistance of systemically administered oncolytic vaccinia virus (oVV), immunotherapy and their combination, to find an effective therapy for refractory lung cancer.
Results:
Resembling human lung cancers, the majority of which are largely resistant to PD-1/PD-L1 blockade and with decreased PD-L1 expression and T-cell activation by our analysis, urethane-induced endogenous lung tumors in mice show reduced PD-L1 expression, low tumor-infiltrating lymphocytes and innate resistance to PD-1/PD-L1 blockade. Intravenous administration of oVV has efficacy and synergizes with simultaneous but not single blockade of PD-1 and T-cell immunoglobulin and mucin-domain containing-3 (TIM-3) in this cancer model. Besides direct tumor cell killing, oVV induces T-cell lung recruitment, tumor infiltration, along with expression of PD-1 and TIM-3 on T cells and PD-1 and TIM-3 ligands on tumor cells and tumor-associated immune cells. Blockade of PD-1 or TIM-3 also causes their mutual induction on T cells.
Conclusions:
While systemic administration of oVV shows efficacy in lung cancer by killing tumor cells directly and recruiting and activating T cells for indirect tumor killing, its induction of PD-1 and TIM-3 on T cells and PD-1 and TIM-3 ligands on tumors and tumor-associated immune cells as well as mutual induction of PD-1 or TIM-3 on T cells by their blockade restricts the efficacy of oVV or its combination with single PD-1 or TIM-3 blockade. The triple combination therapy is more effective for refractory lung cancer, and possibly other cold cancers as well.
Insights
Systemic oncolytic vaccinia virus (oVV) shows promise for lung cancer, but combination therapy with PD-1/TIM-3 blockade is needed for refractory cases. Triple therapy effectively targets resistant lung cancers by overcoming immune suppression.
Area of Science:
- Immunotherapy
- Oncolytic Virology
- Lung Cancer Research
Background:
- Programmed cell death 1 (PD-1)/programmed death ligand 1 (PD-L1) blockade therapy is ineffective for most cancer patients.
- Oncolytic viruses show therapeutic potential but have disappointing efficacy.
- Intratumoral injection and syngeneic/xenograft models are common in preclinical studies.
Purpose of the Study:
- Investigate systemic oncolytic vaccinia virus (oVV) efficacy in a mouse lung cancer model.
- Determine the mechanism of action and resistance of oVV and immunotherapy combinations.
- Identify effective therapies for refractory lung cancer.
Main Methods:
- Utilized an endogenous mouse lung cancer model that mimics human lung cancer.
- Employed in vivo, ex vivo, and in vitro assays to assess therapeutic strategies.
- Administered oVV systemically and combined it with PD-1 and/or TIM-3 blockade.
Main Results:
- Urethane-induced lung tumors exhibited reduced PD-L1 expression and resistance to PD-1/PD-L1 blockade.
- Systemic oVV demonstrated efficacy and synergized with combined PD-1 and TIM-3 blockade.
- oVV induced T-cell recruitment and expression of PD-1/TIM-3, while blockade induced mutual expression of these checkpoints.
Conclusions:
- Systemic oVV efficacy in lung cancer is limited by induced immune checkpoint expression.
- Combined PD-1 and TIM-3 blockade synergizes with oVV but single blockade is insufficient.
- Triple combination therapy offers a promising approach for refractory lung cancers and potentially other cold tumors.
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