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首页> 外文期刊>Cell death & disease. >Critical roles of conventional dendritic cells in autoimmune hepatitis via autophagy regulation
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Critical roles of conventional dendritic cells in autoimmune hepatitis via autophagy regulation

机译:常规树突细胞通过自噬调节常规树突细胞对自身免疫性肝炎的关键作用

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Autoimmune hepatitis (AIH) is a necroinflammatory disease associated with interactive cell populations of the innate and adaptive immune systems. The contribution of conventional dendritic cells (cDCs) to AIH and the underlying mechanism remain poorly understood. The frequency of peripheral mature cDCs increased in AIH patients and was positively correlated with disease severity. In experimental autoimmune hepatitis (EAH), hepatic accumulation of mature cDCs was observed, along with an increase in the periphery. Sequentially, bone marrow-derived dendritic cells (BMDC) from EAH mice exhibit more proinflammatory function than those from control mice. In vitro, ConA treatment promotes the maturation of BMDCs, which are characterized by higher expression of MHC-II, costimulatory molecules and cytokine secretion. ConA also induced the expression of autophagy-related protein and the formation of autophagosomes in DCs. To further investigate whether ConA-induced DC activation is associated with autophagy, we utilized 3-MA and bafilomycin A1 to block autophagy flux and accessed the maturation and function of DCs induced by ConA. 3-MA and bafilomycin A1 inhibited the mature status and proinflammatory cytokine secretion and diminished the proliferation and differentiation of CD4 T cells when ConA-induced BMDCs cocultured CD4 T cells. We demonstrated that cDCs contribute to the pathogenesis of AIH through excessive maturation. Aberrant autophagy flux plays a vital role in the immunogenic maturation of cDCs in AIH, and tolerogenic cDCs by inhibition of autophagy flux can be exploited as a new therapeutic approach for AIH.
机译:自身免疫性肝炎(AIH)是与先天和自适应免疫系统的交互细胞群相关的NeCroincoly疾病。常规树突状细胞(CDC)对AIH和潜在机制的贡献仍然明白。疾病患者的外周成熟CDC的频率增加,并与疾病严重程度正相关。在实验性自身免疫肝炎(EAH)中,观察到成熟CDC的肝积累,随着周边的增加。顺序地,来自EAH小鼠的骨髓衍生的树突状细胞(BMDC)表现出比来自对照小鼠的小鼠更多的促炎功能。体外,Cona治疗促进BMDC的成熟,其特征在于MHC-II,共刺激分子和细胞因子分泌的表达。 Cona还诱导了与DCS中自噬相关蛋白质的表达和自噬复印体的形成。为了进一步研究Cona诱导的DC活化是否与自噬相关,我们使用3 mA和BafiLomycin A1来阻止自噬助焊剂并进入Cona诱导的DC的成熟和功能。 3MA和BafiLomycin A1抑制了成熟的状态和促炎细胞因子分泌,并在CONA诱导的BMDCS共有CD4 T细胞中减少CD4 T细胞的增殖和分化。我们证明CDC通过过度成熟的疾病促进AIH的发病机制。异常的自噬助体在AIH中CDC的免疫原性成熟中起着至关重要的作用,并且通过抑制自噬疾病的耐受性CDC可以被利用为AIH的新治疗方法。

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