TLR2- and 4-independent immunomodulatory effect of high molecular weight components from Ascaris suum
- PMID: 24263181
- DOI: 10.1016/j.molimm.2013.10.011
TLR2- and 4-independent immunomodulatory effect of high molecular weight components from Ascaris suum
Abstract
Components of high molecular-weight (PI) obtained from Ascaris suum extract down-regulate the Th1/Th2-related immune responses induced by ovalbumin (OVA)-immunization in mice. Furthermore, the PI down-modulates the ability of dendritic cells (DCs) to activate T lymphocytes by an IL-10-mediated mechanism. Here, we evaluated the role of toll like receptors 2 and 4 (TLR2 and 4) in the modulatory effect of PI on OVA-specific immune response and the PI interference on DC full activation. An inhibition of OVA-specific cellular and humoral responses were observed in wild type (WT) or in deficient in TLR2 (TLR2(-/-)) or 4 (TLR4(-/-)) mice immunized with OVA plus PI when compared with OVA-immunized mice. Low expression of class II MHC, CD40, CD80 and CD86 molecules was observed in lymph node (LN) cells from WT, TLR2(-/-) or TLR4(-/-) mice immunized with OVA plus PI compared with OVA-primed cells. We also verified that PI was able to modulate the activation of DCs derived from bone marrow of WT, TLR2(-/-) or TLR4(-/-) mice induced in vitro by agonists of TLRs, as observed by a decreased expression of class II MHC and costimulatory molecules and by low secretion of pro-inflammatory cytokines. Its effect was accompanied by IL-10 synthesis. In this sense, the modulatory effect of PI on specific-immune response and DC activation is independent of TLR2 or TLR4.
Keywords: APC; Asc; Ascaris suum; Ascaris suum extract; C-type lectin receptor; CLR; DC; DTH; Dendritic Cells; Dendritic cell; ELISA; High molecular weight components; High molecular weight components from Ascaris suum; Immunoregulation; PI; TLR2; TLR4; Toll like receptor 2 (TLR2); Toll like receptor 4 (TLR4); antigen presenting cell; delayed-type hypersensitivity reaction; enzyme linked immunosorbent assay; toll like receptor 2; toll like receptor 4.
Copyright © 2013 Elsevier Ltd. All rights reserved.
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