Title of article :
Poor allostimulatory function of liver plasmacytoid DC is associated with pro-apoptotic activity, dependent on regulatory T cells
Author/Authors :
Daisuke Tokita، نويسنده , , Tina L. Sumpter، نويسنده , , Giorgio Raimondi، نويسنده , , Alan F. Zahorchak، نويسنده , , Zhiliang Wang، نويسنده , , Atsunori Nakao، نويسنده , , George V. Mazariegos، نويسنده , , Yoshitaka Kitamoto and Masanori Abe، نويسنده , , Angus W. Thomson، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
Background/Aims
The liver is comparatively rich in plasmacytoid (p) dendritic cells (DC), – innate immune effector cells that are also thought to play key roles in the induction and regulation of adaptive immunity.
Methods
Liver and spleen pDC were purified from fms-like tyrosine kinase ligand-treated control or lipopolysaccharide-injected C57BL/10 mice. Flow cytometric and molecular biologic assays were used to characterize their function and interaction with naturally occurring regulatory T cells (Treg).
Results
While IL-10 production was greater for freshly isolated liver compared with splenic pDC, the former produced less bioactive IL-12p70. Moreover, liver pDC expressed a low Delta4/Jagged1 Notch ligand ratio, skewed towards T helper 2 cell differentiation/cytokine production, and promoted allogeneic CD4+T cell apoptosis. T cell proliferation in response to liver pDC was, however, enhanced by blocking IL-10 function at the initiation of cultures. In the absence of naturally occurring CD4+CD25+ regulatory T cells, similar levels of T cell proliferation were induced by liver and spleen pDC and the pro-apoptotic activity of liver pDC was reversed.
Conclusions
The inferior T cell allostimulatory activity of in vivo-stimulated liver pDC may depend on the presence and function of Treg, a property that may contribute to inherent liver tolerogenicity.
Keywords :
dendritic cells , liver , T cells , mouse , endotoxin , Toll-like receptor , tolerance
Journal title :
Journal of Hepatology
Journal title :
Journal of Hepatology