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Role of Kupffer cells in liver injury induced by CpG oligodeoxynucleotide and flucloxacillin in mice

机译:Kupffer细胞在CpG寡脱氧核苷酸和氟脲氧胞苷诱导小鼠肝损伤中的作用

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CpG oligodeoxynucleotide (CpG-ODN) is a Toll-like receptor 9 (TLR9) agonist that can induce innate immune responses. In a previous study, flucloxacillin (FLUX; 100 mg/kg, gavage)-induced liver injury in mice was enhanced by co-administration of CpG-ODN (40 μg/mouse, intraperitoneally). In this study, the mechanism of CpG-ODN sensitization to FLUX-induced liver injury was further investigated in mice inhibited of Kupffer cells (KCs) function by gadolinium chloride (GdCl3; 10 mg/kg, intravenously). GdCl3-treated mice administrated with CpG-ODN and FLUX showed lower liver injury than wild-type (WT) mice treated with CpG-ODN and FLUX. Upregulation of Fas and FasL by CpG-ODN was also inhibited in GdCl3-treated mice and mitochondrial swelling in response to FLUX failed to occur regardless of pre-treatment with CpG-ODN. When FasL-mutant gld/gld mice were treated with CpG-ODN, mitochondrial swelling in response to FLUX was also inhibited. These results suggest that KCs play an essential role in liver injury induced by CpG-ODN and FLUX. CpG-ODN may activate KCs, resulting in induction of Fas/FasL-mediated apoptosis of hepatocytes. The Fas/FasL pathway may also be an upstream regulator of CpG-ODN- and FLUX-induced changes in mitochondrial permeability transition. These results enhance our understanding of the mechanism of the adjuvant effect of CpG-ODN in this mouse model of liver injury.
机译:CpG寡脱氧核苷酸(CpG-ODN)是一种可造成的受体9(TLR9)激动剂,其可诱导先天性免疫应答。在先前的研究中,通过共同施用CPG-ODN(40μg/小鼠,腹膜内),增强了氟脲氧基胞嘧啶(助焊剂; 100mg / kg,饲养)诱导小鼠的肝损伤。在该研究中,在氯化钆(GdCl3; 10mg / kg,静脉内)抑制Kupffer细胞(KCS)功能的小鼠中进一步研究了CpG-ODN致致态诱导肝损伤的机制。用CPG-ODN和助焊剂给予GDCL3处理的小鼠显示比用CPG-ODN和通量处理的野生型(WT)小鼠的肝损伤更低。通过CpG-ODN的Fas和FasL的上调也抑制了Gdcl3处理的小鼠,并且无论用CpG-ODN预处理,无需发生助焊剂的线粒体溶胀。当用CPG-ODN处理FasL-突变GLD / GLD小鼠时,也抑制了响应助焊剂的线粒体溶胀。这些结果表明,KCS在CPG-ODN和助焊剂引起的肝损伤中发挥着重要作用。 CPG-ODN可以激活KC,导致肝细胞的Fas / FasL介导的凋亡诱导。 Fas / FasL途径也可以是CPG-ODN-和助焊剂诱导的线粒体渗透率转变变化的上游调节因子。这些结果提高了我们对肝损伤小鼠模型中CpG-ODN的佐剂效应机制的理解。

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