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首页> 外文期刊>International immunopharmacology >Physiological concentrations of transforming growth factor beta1 selectively inhibit human dendritic cell function.
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Physiological concentrations of transforming growth factor beta1 selectively inhibit human dendritic cell function.

机译:生理浓度的转化生长因子β1选择性抑制人类树突状细胞的功能。

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In this study the effects of different in vitro conditioning with transforming growth factor (TGF) beta1 on human monocyte-derived DC maturation (hMo-DC) were investigated. hMo-DC differentiated in the presence of physiologically relevant concentrations of TGFbeta1 (2 ng/ml) failed to undergo complete maturation despite adequate stimulation with LPS or LPS+IFNgamma.These hMo-DC did not produce IL-12p70 or PGE2, and showed decreased IL-10 and IL-18 production and HLA-DR expression. However, the expression of these molecules, except for IL-12p70, was not significantly affected in hMo-DC differentiated in the presence of lower concentrations of TGFbeta1 (0.2 and 0.02 ng/ml). Exposure of hMo-DC to TGFbeta1 (2 ng/ml) after they had completed differentiation had minimal effects. Thus, the functional response of hMo-DC to LPS or LPS+IFNgamma depended on the stage of hMo-DC differentiation at which cells were first exposed to TGFbeta1 and on the concentration of TGFbeta1. These results suggest that in the in vivo micro-environment, the concentrations and the timing of monocyte exposure to TGFbeta1 may be crucial in the differentiation of DC toward more or less mature phenotypes, and this may have important implications for DC functions. The decrease in T-cell proliferation and a small increase in IL-5 production by T cells co-cultured with hMo-DC that had been treated with TGFbeta1, suggest the possibility that in vivo such DC may provide chronic, but incomplete signals to T cells, and this could be a potential mechanism underlying polarisation of T cells towards anergy.
机译:在这项研究中,研究了不同的体外条件下转化生长因子(TGF)beta1对人单核细胞衍生的DC成熟(hMo-DC)的影响。尽管受到LPS或LPS +IFNγ的充分刺激,在生理相关浓度的TGFbeta1(2 ng / ml)存在下分化的hMo-DC未能完全成熟。这些hMo-DC不会产生IL-12p70或PGE2,并且显示降低IL-10和IL-18产生以及HLA-DR表达。但是,这些分子的表达(IL-12p70除外)在存在较低浓度的TGFbeta1(0.2和0.02 ng / ml)的hMo-DC中没有受到显着影响。 hMo-DC在分化完成后暴露于TGFbeta1(2 ng / ml)的影响最小。因此,hMo-DC对LPS或LPS +IFNγ的功能响应取决于hMo-DC分化的​​阶段,在该阶段,细胞首先暴露于TGFbeta1,并且取决于TGFbeta1的浓度。这些结果表明,在体内的微环境中,单核细胞暴露于TGFbeta1的浓度和时间可能对DC向或多或少成熟表型的分化至关重要,这可能对DC功能具有重要意义。与hMo-DC共培养的T细胞经TGFbeta1处理后,T细胞增殖的减少和IL-5产量的小幅增加表明,这种DC可能在体内向T提供慢性但不完整的信号细胞,这可能是潜在的机制,导致T细胞极化向无能状态。

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