Inhaled tlr9 agonist renders lung tumors permissive to pd-1 blockade by promoting optimal CD4þ and CD8þ T-cell Interplay

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Abstract

Currently approved inhibitors of the PD-1/ PD-L1 pathway represent a major advance for the treatment of lung cancers, yet they are ineffective in a majority of patients due to lack of preexisting T-cell reactivity. Here, we show that a TLR9 agonist delivered by inhalation is able to prime T-cell responses against poorly immunogenic lung tumors and to complement the effects of PD-1 blockade. Inhaled TLR9 agonist causes profound remodeling in tumor-bearing lungs, leading to the formation of tertiary lymphoid structures adjacent to the tumors, CD8þ T-cell infiltration into the tumors, dendritic cell expansion, and antibody production. Inhalation of TLR9 agonist also increased the pool of functional PD-1lowT-bethigh effector CD8þ T cells in tumor-bearing lungs. Effector CD8þ T cells generated by inhaled TLR9 agonist treatment were licensed by PD-1 blockade to become highly functional CTLs, leading to a durable rejection of both lung tumors and tumor lesions outside the lungs. CD4þ T cells activated in response to inhaled TLR9 play a critical role in this process by controlling the proliferation, preventing exhaustion, and guiding the differentiation of optimally functional CTLs. This study characterizes a strategy to apply localized TLR9 stimulation to a tumor type not accessible for direct injection, a strategy that may expand the therapeutic potential of PD-1 blockade in non–small cell lung cancer.

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Gallotta, M., Assi, H., Degagne, E., Kannan, S. K., Coffman, R. L., & Guiducci, C. (2018). Inhaled tlr9 agonist renders lung tumors permissive to pd-1 blockade by promoting optimal CD4þ and CD8þ T-cell Interplay. Cancer Research, 78(17), 4943–4956. https://doi.org/10.1158/0008-5472.CAN-18-0729

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