Toll-Like Receptor 5 Engagement Modulates Tumor Development and Growth in a Mouse Xenograft Model of Human Colon Cancer
Background & Aims: Toll-like receptor (TLR)-dependent signaling was proposed as immunotherapeutic targets against invading pathogens and tumorigenesis. Here, we investigated whether TLR5-dependent signaling modulates colonic tumor development in mouse xenograft model of human colon cancer. Methods:The expression of myeloid differentiation factor 88 (MyD88) or TLR5 was stably knocked down in human colon cancer cells (DLD-1). Nude mice were subcutaneously implanted with MyD88-knocked down (KD), TLR5-KD, or control cells (n = 16) to examine the pathophysiology of tumor xenografts. Protein microarray assessed the differential expression of cytokines in these tumors. Leukocyte infiltration and tumor angiogenesis were assessed by immunohistochemistry with antibodies against neutrophil (Gr-1, 7/4) or macrophage-specific antigens (CD68, F4-80) and the vascular endothelial cell marker CD31, respectively. Tumor xenografts from DLD-1 cells were treated with flagellin (5.0 μg/kg, 1 injection/every 2 days for 3 weeks), and tumor regression and histopathology were examined. Results:Lack of MyD88 or TLR5 expression dramatically enhanced tumor growth and inhibited tumor necrosis in mouse xenografts of human colon cancer. In contrast, TLR5 activation by peritumoral flagellin treatment substantially increased tumor necrosis, leading to significant tumor regression. Tumors from MyD88-KD or TLR5-KD cells revealed the reduced production of neutrophil attracting chemokines (epithelial cell-derived neutrophil-activating peptide-78, macrophage-inflammatory protein α, and interleukin-8). Consequently, neutrophil infiltration was dramatically diminished in MyD88- or TLR5-KD xenografts, whereas tumor-associated macrophage infiltration or angiogenesis was not changed. Conclusions:TLR5 engagement by flagellin mediates innate immunity and elicits potent antitumor activity, indicating that TLR5-dependent signaling could be a potential immunotherapeutic target to modulate colonic tumors.
Abbreviations used in this paper: ENA-78, epithelial cell-derived neutrophil-activating peptide-78, MCP-1, monocyte chemoattractant protein-1, MIP3α, macrophage-inflammatory protein α, MyD88, myeloid differentiation factor 88, NAP-2, neutrophil-activating peptide 2, PECAM, platelet/endothelial cell adhesion molecule, RANTES/CCL5, regulated on activation of normal T cell expressed and secreted, TLR, Toll-like receptor
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Supported by a Research Fellowship Award (to S.H.R.) from the “Crohn's and Colitis Foundation of America, Inc,” Young Clinical Scientific Award from Flight Attendant Medical Research Institute, Inc. (to S.H.R. and E.I.), and RO-1 DK072471 (to C.P.).
Conflicts of interest: The authors declare that they have no competing financial interests.
S.H.R. and C.P.'s current address is MRL1240, 675 Charles E. Young Drive South, Division of Digestive Diseases, David Geffen School of Medicine, UCLA, Los Angeles, California 90095.
PII: S0016-5085(08)00674-4
doi:10.1053/j.gastro.2008.04.022
© 2008 AGA Institute. Published by Elsevier Inc. All rights reserved.
Refers to article:
- Guardians of the Gut: Newly Appreciated Role of Epithelial Toll-Like Receptors in Protecting the Intestine , 11 July 2008

