IFN-β1a Inhibits the Secretion of Th17-Polarizing Cytokines in Human Dendritic Cells via TLR7 Up-Regulation

  • Zhang X
  • Jin J
  • Tang Y
  • et al.
83Citations
Citations of this article
67Readers
Mendeley users who have this article in their library.
Get full text

Abstract

IFN-β, an effective therapy against relapsing-remitting multiple sclerosis, is naturally secreted during the innate immune response against viral pathogens. The objective of this study was to characterize the immunomodulatory mechanisms of IFN-β targeting innate immune response and their effects on dendritic cell (DC)-mediated regulation of T cell differentiation. We found that IFN-β1a in vitro treatment of human monocyte-derived DCs induced the expression of TLR7 and the members of its downstream signaling pathway, including MyD88, IL-1R-associated kinase 4, and TNF receptor-associated factor 6, while it inhibited the expression of IL-1R. Using small interfering RNA TLR7 gene silencing, we confirmed that IFN-β1a-induced changes in MyD88, IL-1R-associated kinase 4, and IL-1R expression were dependent on TLR7. TLR7 expression was also necessary for the IFN-β1a-induced inhibition of IL-1β and IL-23 and the induction of IL-27 secretion by DCs. Supernatant transfer experiments confirmed that IFN-β1a-induced changes in DC cytokine secretion inhibit Th17 cell differentiation as evidenced by the inhibition of retinoic acid-related orphan nuclear hormone receptor C and IL-17A gene expression and IL-17A secretion. Our study has identified a novel therapeutic mechanism of IFN-β1a that selectively targets the autoimmune response in multiple sclerosis.

Cite

CITATION STYLE

APA

Zhang, X., Jin, J., Tang, Y., Speer, D., Sujkowska, D., & Markovic-Plese, S. (2009). IFN-β1a Inhibits the Secretion of Th17-Polarizing Cytokines in Human Dendritic Cells via TLR7 Up-Regulation. The Journal of Immunology, 182(6), 3928–3936. https://doi.org/10.4049/jimmunol.0802226

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free