151. Diterpene, 16-phyllocladanol enhances Th1 polarization induced by LPS-primed DC, but not TNF-alpha-primed DC
- Author
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Noboru Shoji, Akemi Umeyama, Toshihiro Hashimoto, and Masao Takei
- Subjects
Lipopolysaccharides ,medicine.medical_treatment ,T cell ,Biophysics ,Immunoglobulins ,Biology ,Lymphocyte Activation ,Biochemistry ,Monocytes ,Antigens, CD ,medicine ,Humans ,Secretion ,Molecular Biology ,Cells, Cultured ,Membrane Glycoproteins ,Tumor Necrosis Factor-alpha ,Chemotaxis ,Antibodies, Monoclonal ,Cell Polarity ,Cell Biology ,Dendritic Cells ,HLA-DR Antigens ,Th1 Cells ,Molecular biology ,Interleukin-12 ,In vitro ,Coculture Techniques ,Toll-Like Receptor 2 ,Toll-Like Receptor 4 ,TLR2 ,Cytokine ,medicine.anatomical_structure ,Immunology ,TLR4 ,Interleukin 12 ,Tumor necrosis factor alpha ,Diterpenes - Abstract
16-Phyllocladanol is diterpene isolated form the heartwood of Cryptomeria japonica. We demonstrate that the effect of 16-phyllocladanol on the phenotypic and functional maturation of human monocytes-derived DC in vitro. Human monocytes were exposed to 16-phyllocladanol alone, or in combination with LPS and thereafter co-cultured with naive T cells. The expression levels of CD83 and HLA-DR on LPS-primed DC were enhanced by 16-phyllocladanol. 16-Phyllocladanol dose-dependently augmented the T cell stimulatory capacity in an allo MLR to LPS-primed DC and the production of IL-12p70 by LPS-primed DC. The cytokine production by 16-phyllocladanol-primed DC was not inhibited by anti-TLR2 and 4 mAbs. IFN-gamma secretion from naive T cells co-cultured with DC differentiated with LPS was also augmented by 16-phyllocladanol. These results suggest that the enhancement of Th1 cells polarization to LPS-primed DC induced by 16-phyllocladanol via the activation of IL-12p70 and independent on TLR2 or TLR4.
- Published
- 2008