首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Signs of immaturity of splenic dendritic cells from the autoimmune prone biobreeding rat: consequences for the in vitro expansion of regulator and effector T cells.
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Signs of immaturity of splenic dendritic cells from the autoimmune prone biobreeding rat: consequences for the in vitro expansion of regulator and effector T cells.

机译:自体免疫易生生物大鼠脾脏树突状细胞不成熟的迹象:调节性和效应性T细胞体外扩增的后果。

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摘要

From the biobreeding-diabetic prone (BB-DP) rat, an animal model for endocrine autoimmunity, phenotype and function of splenic dendritic cells (DC) were studied. Furthermore, the suppressive effect of peritoneal macrophages (pMphi) from the BB-DP rat in the MLR was investigated. Lower numbers of splenic DC were isolated from BB-DP rats than from control Wistar rats. In the preautoimmune phase, DC of the BB-DP rat had a lower surface MHC class II expression (and in preliminary data, a lower CD80 expression), ingested more bacteria, and had a lower stimulatory potency in the syngeneic (syn)MLR as compared with control DC. During disease development, the MHC class II expression further decreased, and a low stimulatory activity became evident in the allogeneic (allo)MLR. With regard to the expansion of suppressor/regulatory T cells, a lower percentage of RT6+ T cells but higher percentages of CD45RClow T cells were induced by BB-DP DC in synMLR, but not in alloMLR. An increase in the CD4/CD8 T cell ratio was observed in both the syn- and alloMLR due to a relative weak expansion of CD8+ T cells with DC of the BB-DP rat. Resident pMphi isolated from BB-DP or Wistar rats were equally effective in suppressing the DC-driven synMLR. In conclusion, splenic DC from the BB-DP rat have a lower accessory cell function already at young age, before the development of disease, and expanded different subsets of effector/suppressor T cells in vitro as compared with those from Wistar rats. The dysfunction of DC from BB-DP rats is likely to be caused by their relative immaturity as indicated by their low class II and costimulatory molecule expression and relatively high phagocytic activity.
机译:从具有生物倾向的糖尿病(BB-DP)大鼠中,研究了内分泌自身免疫,脾树突状细胞(DC)的表型和功能的动物模型。此外,研究了来自BB-DP大鼠的腹膜巨噬细胞(pMphi)在MLR中的抑制作用。与对照Wistar大鼠相比,从BB-DP大鼠中分离出的脾脏DC数量较少。在自身免疫前阶段,BB-DP大鼠的DC的表面MHC II类表达较低(在初步数据中,CD80的表达较低),吸收了更多的细菌,并且在同基因(syn)MLR中的刺激力较低,与控制DC相比。在疾病发展过程中,MHC II类表达进一步降低,同种异体(allo)MLR中的低刺激活性变得明显。关于抑制性/调节性T细胞的扩增,在synMLR中,BB-DP DC诱导了较低百分比的RT6 + T细胞,但是较高百分数的CD45RClow T细胞,但在同种MLR中却没有。在syn-和alloMLR中均观察到CD4 / CD8 T细胞比率增加,这是由于BB-DP大鼠的DC导致CD8 + T细胞的扩张相对较弱。从BB-DP或Wistar大鼠中分离出的常驻pMphi在抑制DC驱动的synMLR方面同样有效。总之,与Wistar大鼠相比,BB-DP大鼠的脾脏DC在幼年之前就已经具有较低的辅助细胞功能,并且在体外扩展了不同的效应子/抑制性T细胞亚群。 BB-DP大鼠DC的功能障碍可能是由于其相对不成熟所致,如II类和共刺激分子的低表达以及相对较高的吞噬活性所表明的。

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