Literature DB >> 22685313

Radiotherapy promotes tumor-specific effector CD8+ T cells via dendritic cell activation.

Anurag Gupta1, Hans Christian Probst, Van Vuong, Alexandro Landshammer, Sabine Muth, Hideo Yagita, Reto Schwendener, Martin Pruschy, Alexander Knuth, Maries van den Broek.   

Abstract

Radiotherapy is an important treatment for cancer. The main mode of action is thought to be the irreversible damage to tumor cell DNA, but there is evidence that irradiation mobilizes tumor-specific immunity, and recent studies showed that the efficacy of high-dose radiotherapy depends on the presence of CD8(+) T cells. We show in this study that the efficacy of radiotherapy given as a single, high dose (10 Gy) crucially depends on dendritic cells and CD8(+) T cells, whereas CD4(+) T cells or macrophages are dispensable. We show that local high-dose irradiation results in activation of tumor-associated dendritic cells that in turn support tumor-specific effector CD8(+) T cells, thus identifying the mechanism that underlies radiotherapy-induced mobilization of tumor-specific immunity. We propose that in the absence of irradiation, the activation status of dendritic cells rather than the amount of tumor-derived Ag is the bottleneck, which precludes efficient anti-tumor immunity.

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Mesh:

Year:  2012        PMID: 22685313     DOI: 10.4049/jimmunol.1200563

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  146 in total

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6.  Radiotherapy suppressed tumor-specific recruitment of regulator T cells via up-regulating microR-545 in Lewis lung carcinoma cells.

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9.  PD-1 blockade enhances radio-immunotherapy efficacy in murine tumor models.

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10.  Whole-body irradiation increases the magnitude and persistence of adoptively transferred T cells associated with tumor regression in a mouse model of prostate cancer.

Authors:  Lindsay K Ward-Kavanagh; Junjia Zhu; Timothy K Cooper; Todd D Schell
Journal:  Cancer Immunol Res       Date:  2014-05-06       Impact factor: 11.151

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