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Guldberg, S. M.

Publications and source records attributed to Guldberg, S. M..

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T cell-instructed inflammation drives immune checkpoint inhibitor therapy resistance

Resistance to immune checkpoint inhibitors (ICIs) is common, even in tumors with T cell infiltration. We thus investigated consequences of ICI-induced T cell infiltration in the microenvironment of resistant tumors. T cells increased in ICI-resistant tumors following treatment as did neutrophils, in contrast to ICI-responsive tumors. Resistant tumors were distinguished by high expression of IL-1 Receptor 1 (IL1R1), enabling a synergistic response to IL-1 and TNF to induce G-CSF, CXCL1, and CXCL2 via NF-{kappa}B signaling, supporting neutrophils. Perturbation of this inflammatory resistance circuit sensitized tumors to ICIs. Paradoxically, T cells drove this resistance circuit via TNF both in vitro and in vivo. Evidence of this inflammatory resistance circuit and its impact also translated to human cancers. These data support a novel mechanism of ICI resistance, wherein treatment-induced T cell activity can drive resistance in tumors responsive to IL-1 and TNF, with important therapeutic implications. Statement of SignificanceAlthough T cell-infiltrated cancers are frequently resistant to immune checkpoint inhibitor therapies, mechanisms of resistance beyond T cell exhaustion remain unclear. Here, we reveal the functional significance of tumor- infiltrating T cells in resistant tumors, which surprisingly instruct immunosuppressive inflammation in mouse and human cancers responsive to IL-1 and TNF.

immunology↗