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Tumor-targeted TNF? stabilizes tumor vessels and enhances active immunotherapy.


ABSTRACT: Solid tumors are intrinsically resistant to immune rejection. Abnormal tumor vasculature can act as a barrier for immune cell migration into tumors. We tested whether targeting IFN? and/or TNF? into pancreatic neuroendocrine tumors can alleviate immune suppression. We found that intratumoral IFN? causes rapid vessel loss, which does not support anti-tumor immunity. In contrast, low-dose TNF? enhances T-cell infiltration and overall survival, an effect that is exclusively mediated by CD8(+) effector cells. Intriguingly, lymphocyte influx does not correlate with increased vessel leakiness. Instead, low-dose TNF? stabilizes the vascular network and improves vessel perfusion. Inflammatory vessel remodeling is, at least in part, mediated by tumor-resident macrophages that are reprogrammed to secrete immune and angiogenic modulators. Moreover, inflammatory vessel remodeling with low-dose TNF? substantially improves antitumor vaccination or adoptive T-cell therapy. Thus, low-dose TNF? promotes both vessel remodeling and antitumor immune responses and acts as a potent adjuvant for active immunotherapy.

SUBMITTER: Johansson A 

PROVIDER: S-EPMC3356673 | biostudies-literature | 2012 May

REPOSITORIES: biostudies-literature

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Tumor-targeted TNFα stabilizes tumor vessels and enhances active immunotherapy.

Johansson Anna A   Hamzah Juliana J   Payne Christine J CJ   Ganss Ruth R  

Proceedings of the National Academy of Sciences of the United States of America 20120430 20


Solid tumors are intrinsically resistant to immune rejection. Abnormal tumor vasculature can act as a barrier for immune cell migration into tumors. We tested whether targeting IFNγ and/or TNFα into pancreatic neuroendocrine tumors can alleviate immune suppression. We found that intratumoral IFNγ causes rapid vessel loss, which does not support anti-tumor immunity. In contrast, low-dose TNFα enhances T-cell infiltration and overall survival, an effect that is exclusively mediated by CD8(+) effec  ...[more]

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