IL-6 trans-signaling licenses mouse and human tumor microvascular gateways for trafficking of cytotoxic T cells Journal Article


Authors: Fisher, D. T.; Chen, Q.; Skitzki, J. J.; Muhitch, J. B.; Zhou, L.; Appenheimer, M. M.; Vardam, T. D.; Weis, E. L.; Passanese, J.; Wang, W. C.; Gollnick, S. O.; Dewhirst, M. W.; Rose-John, S.; Repasky, E. A.; Baumann, H.; Evans, S. S.
Article Title: IL-6 trans-signaling licenses mouse and human tumor microvascular gateways for trafficking of cytotoxic T cells
Abstract: Immune cells are key regulators of neoplastic progression, which is often mediated through their release of cytokines. Inflammatory cytokines such as IL-6 exert tumor-promoting activities by driving growth and survival of neoplastic cells. However, whether these cytokines also have a role in recruiting mediators of adaptive anticancer immunity has not been investigated. Here, we report that homeostatic trafficking of tumor-reactive CD8+ T cells across microvascular checkpoints is limited in tumors despite the presence of inflammatory cytokines. Intravital imaging in tumor-bearing mice revealed that systemic thermal therapy (core temperature elevated to 39.5°C ± 0.5°C for 6 hours) activated an IL-6 trans-signaling program in the tumor blood vessels that modified the vasculature such that it could support enhanced trafficking of CD8+ effector/memory T cells (Tems) into tumors. A concomitant decrease in tumor infiltration by Tregs during systemic thermal therapy resulted in substantial enhancement of Tem/Treg ratios. Mechanistically, IL-6 produced by nonhematopoietic stromal cells acted cooperatively with soluble IL-6 receptor-α and thermally induced gp130 to promote E/P-selectin- and ICAM-1-dependent extravasation of cytotoxic T cells in tumors. Parallel increases in vascular adhesion were induced by IL-6/soluble IL-6 receptor-α fusion protein in mouse tumors and patient tumor explants. Finally, a causal link was established between IL-6-dependent licensing of tumor vessels for Tem trafficking and apoptosis of tumor targets. These findings suggest that the unique IL-6-rich tumor microenvironment can be exploited to create a therapeutic window to boost T cell-mediated antitumor immunity and immunotherapy.
Keywords: signal transduction; controlled study; nonhuman; neoplasms; cd8+ t lymphocyte; animal cell; mouse; animals; mice; apoptosis; animal experiment; cell line, tumor; regulatory t lymphocyte; cytotoxic t lymphocyte; t-lymphocytes, cytotoxic; interleukin 6; interleukin-6; cell movement; hyperthermia, induced; microvessels; intercellular adhesion molecule 1; endothelial leukocyte adhesion molecule 1; p-selectin; intercellular adhesion molecule-1; memory t lymphocyte; padgem protein; tumor microenvironment; glycoprotein gp 130; models, immunological; e-selectin; interleukin 6 receptor alpha; vascular adhesion protein 1
Journal Title: Journal of Clinical Investigation
Volume: 121
Issue: 10
ISSN: 0021-9738
Publisher: American Society for Clinical Investigation  
Date Published: 2011-10-03
Start Page: 3846
End Page: 3859
Language: English
DOI: 10.1172/jci44952
PROVIDER: scopus
PMCID: PMC3195455
PUBMED: 21926464
DOI/URL:
Notes: --- - "Export Date: 2 November 2011" - "CODEN: JCINA" - "Source: Scopus"
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  1. Qing Chen
    7 Chen