Cross-linking of CD32 induces maturation of human monocyte-derived dendritic cells via NF-κB signaling pathway

Z Bánki, L Kacani, B Mullauer… - The journal of …, 2003 - journals.aai.org
Z Bánki, L Kacani, B Mullauer, D Wilflingseder, G Obermoser, H Niederegger, H Schennach…
The journal of immunology, 2003journals.aai.org
Dendritic cells (DC) represent a unique set of APCs that initiate immune responses through
priming of naive T cells. Maturation of DC is a crucial step during Ag presentation and can
be induced by triggering a broad spectrum of DC surface receptors. Although human DC
express several receptors for the Fc portion of IgG which were described to play an
important role in Ag internalization, little is known about the effects of IgG or immune
complexes on DC maturation. In this study, we show that cross-linking of FcγR-type II (CD32) …
Abstract
Dendritic cells (DC) represent a unique set of APCs that initiate immune responses through priming of naive T cells. Maturation of DC is a crucial step during Ag presentation and can be induced by triggering a broad spectrum of DC surface receptors. Although human DC express several receptors for the Fc portion of IgG which were described to play an important role in Ag internalization, little is known about the effects of IgG or immune complexes on DC maturation. In this study, we show that cross-linking of FcγR-type II (CD32) with immobilized IgG (imIgG) can induce maturation of human monocyte-derived DC via the NF-κB signaling pathway. IgG-mediated maturation was accompanied by a moderate increase of IL-10 secretion, whereas no IL-12 production was observed. Involvement of CD32 was further supported by experiments with the anti-CD32 mAb, which blocked IgG-triggered DC maturation and cytokine secretion significantly. Furthermore, DC cultivated in the presence of imIgG induced allogeneic T cell proliferation. Because this imIgG-induced maturation was considerably impaired in monocyte-derived DC from systemic lupus erythematosus patients, we suggest that DC, which matured in the presence of immune complexes, may contribute to prevention of pathological immune responses.
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