Vieira P L, Kaliński P, Wierenga E A, Kapsenberg M L, de Jong E C
Department of Cell Biology and Histology, Academic Medical Center, University of Amsterdam, The Netherlands.
J Immunol. 1998 Nov 15;161(10):5245-51.
Glucocorticoids (GC) are known to affect the immune response at several stages. However, little is known about how GC influence the initiation of the specific immune response at the level of dendritic cells (DC), the highly professional APC for T cells. Therefore, we studied whether GC modulate the cytokine production and T cell stimulatory function of DC. In LPS-stimulated DC, GC strongly reduced the secretion of the Thl-skewing factor IL-12p70 and, to a lesser extent, the production of the proinflammatory cytokines IL-6 and TNF-alpha. Regarding the T cell stimulatory function of DC, GC did not influence the cell surface expression of HLA-DR or the costimulatory molecules CD40 and CD80 and did not influence the ability of DC to take up Ag. Consequently, GC pretreatment of DC indeed did not affect their ability to stimulate CD4+ Th cell proliferation in response to superantigen. However, as a result of their defective production of bioactive IL-12, GC-pretreated DC have a reduced ability to promote the production of IFN-gamma in CD4+ Th lymphocytes, as shown by the observation that IFN-gamma production could be restored by exogenous IL-12. In contrast, GC treatment of DC enhanced the secretion of the antiinflammatory cytokine IL-10 and the type 2 cytokine IL-5 by the T cells. It is concluded that, in addition to their role as potent inhibitors of inflammation via the direct suppression of cytokine production in T cells, GC may further inhibit T cell-mediated inflammation indirectly via the suppression of IL-12 production by DC.
已知糖皮质激素(GC)会在多个阶段影响免疫反应。然而,关于GC如何在树突状细胞(DC)水平影响特异性免疫反应的启动,人们了解甚少。DC是T细胞的高度专职抗原呈递细胞。因此,我们研究了GC是否调节DC的细胞因子产生和T细胞刺激功能。在LPS刺激的DC中,GC强烈降低了Th1偏向因子IL-12p70的分泌,在较小程度上也降低了促炎细胞因子IL-6和TNF-α的产生。关于DC的T细胞刺激功能,GC不影响HLA-DR的细胞表面表达或共刺激分子CD40和CD80,也不影响DC摄取抗原的能力。因此,对DC进行GC预处理确实不影响它们刺激CD4 + Th细胞对超抗原增殖反应的能力。然而,由于其生物活性IL-12产生缺陷,经GC预处理的DC促进CD4 + Th淋巴细胞中IFN-γ产生的能力降低,这一观察结果表明外源性IL-12可恢复IFN-γ的产生。相反,GC处理DC增强了T细胞分泌抗炎细胞因子IL-10和2型细胞因子IL-5。得出的结论是,除了通过直接抑制T细胞中的细胞因子产生作为强效炎症抑制剂的作用外,GC还可能通过抑制DC产生IL-12间接进一步抑制T细胞介导的炎症。