Epstein–barr virus dna exacerbates colitis symptoms in a mouse model of inflammatory bowel disease
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MDPI
Abstract
Infection with EBV has been associated with various inflammatory disorders including inflammatory bowel diseases (IBD). Contribution of this virus to intestinal disease processes has not been assessed. We previously detected that EBV DNA triggers proinflammatory responses via the activation of endosomal Toll-like receptor (TLR) signaling. Hence, to examine the colitogenic potential of EBV DNA, we used the dextran sodium sulfate (DSS) mouse colitis model. C57BL/6J mice received either DSS-containing or regular drinking water. Mice were then administered EBV DNA by rectal gavage. Administration of EBV DNA to the DSS-fed mice aggravated colonic disease activity as well as increased the damage to the colon histologic architecture. Moreover, we observed enhanced expression of IL-17A, IFNγ and TNFα in colon tissues from the colitis mice (DSS-treated) given the EBV DNA compared to the other groups. This group also had a marked decrease in expression of the CTLA4 immunoregulatory marker. On the other hand, we observed enhanced expression of endosomal TLRs in colon tissues from the EBV DNA-treated colitis mice. These findings indicate that EBV DNA exacerbates proinflammatory responses in colitis. The ubiquity of EBV in the population indicates that possible similar responses may be of pertinence in a relevant proportion of IBD patients. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
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Epstein–barr virus, Il-17a, Inflammatory bowel disease, Toll-like receptors, Animals, Colon, Disease models, animal, Disease progression, Dna, viral, Epstein-barr virus infections, Female, Herpesvirus 4, human, Inflammatory bowel diseases, Intestinal mucosa, Mice, Mice, inbred c57bl, Signal transduction, Cytotoxic t lymphocyte antigen 4, Gamma interferon, Interleukin 17, Interleukin 6, Toll like receptor, Toll like receptor 3, Toll like receptor 7, Toll like receptor 9, Tumor necrosis factor, Virus dna, Animal experiment, Animal model, Animal tissue, Article, C57bl 6 mouse, Colitis, Controlled study, Dextran sulfate sodium-induced acute colitis, Enteropathy, Epstein barr virus, Gene expression, Immunoregulation, Inflammation, Mouse, Mouse model, Nonhuman, Real time polymerase chain reaction, Rna extraction, Animal, C57bl mouse, Complication, Disease exacerbation, Disease model, Epstein barr virus infection, Genetics, Immunology, Intestine mucosa, Metabolism, Pathogenicity, Pathology, Virology