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February 8, 2011Cancer Research871 citationsOpen Access

The Efficacy of Radiotherapy Relies upon Induction of Type I Interferon–Dependent Innate and Adaptive Immunity

BBByron BurnetteHLHua LiangYLYoujin Lee

Key Points

  • Investigate the immunological mechanisms underlying tumor regression following local ablative radiotherapy, focusing on the role of type I interferon signaling.
  • Assessed tumor control after ablative radiotherapy in wild-type and type I interferon receptor-deficient mouse models.
  • Evaluated the autocrine activation and cross-priming capacity of tumor-infiltrating dendritic cells following radiation exposure.
  • Administered adenoviral-mediated interferon-beta directly into tumors in the absence of radiotherapy to measure antigen-specific T-cell expansion and tumor regression.
  • Ablative radiotherapy increased intratumoral interferon-beta levels, but tumor control was completely abolished in type I interferon-nonresponsive hosts.
  • Radiotherapy enhanced the cross-priming capacity of tumor-infiltrating dendritic cells via autocrine type I interferon in wild-type hosts, but failed to do so in receptor-deficient models.
  • Intratumoral delivery of exogenous interferon-beta alone was sufficient to expand antigen-specific T cells and achieve complete tumor regression without radiation.

Abstract

The most widely held explanation for the efficacy of local radiotherapy (RT) is based on direct cytotoxicity to cancer cells through the induction of lethal DNA damage. Recent studies have shown that local ablative radiation of established tumors can lead to increased T-cell priming and T-cell-dependent tumor regression, but the underlying mechanism remains unclear. Here, we describe an essential role for type I IFN in local RT-mediated tumor control. We show that ablative RT increases intratumoral production of IFN-β and, more surprisingly, the antitumor effect of RT is abolished in type I IFN nonresponsive hosts. Furthermore, the major target of RT-induced type I IFN is the hematopoietic compartment. RT drastically enhances the cross-priming capacity of tumor-infiltrating dendritic cells (TIDC) from wild-type mice but not type I IFN receptor-deficient mice. The enhanced cross-priming ability of TIDCs after RT was dependent on autocrine production of type I IFNs. By using adenoviral-mediated expression of IFN-β, we show that delivery of exogenous IFN-β into the tumor tissue in the absence of RT is also sufficient to selectively expand antigen-specific T cells leading to complete tumor regression. Our study reveals that local high-dose RT can trigger production of type I IFN that initiates a cascading innate and adaptive immune attack on the tumor.

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Cite This Study

Burnette et al. (2011) studied this question.

synapsesocial.com/papers/69de53c5a051b8e25be93c93https://doi.org/10.1158/0008-5472.can-10-2820
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