Chen Yong, Liu Zuojin, Liang Shaoyong, Luan Xiaofeng, Long Feiwu, Chen Jie, Peng Yong, Yan Lünan, Gong Jianping
Chongqing Key Laboratory of Hepatobiliary Surgery and Department of Hepatobiliary Surgery, Second Affiliated Hospital, Chongqing University of Medical Sciences, Chongqing, People's Republic of China.
Liver Transpl. 2008 Jun;14(6):823-36. doi: 10.1002/lt.21450.
Because the role of Kupffer cells (KCs) in liver transplantation (LT) tolerance is not well understood, we investigated their role in liver allograft acceptance in rats. Male Sprague-Dawley rats were randomly assigned to either an LT group or a transplantation group pretreated with GdCl(3) (Gd group). The rats were postoperatively sacrificed at indicated times for histology and assessment of KC function, nuclear factor kappa B (NF-kappaB) activity, and cytokine production. KCs and T cells (TCs) were isolated from allografts to assess Fas/Fas ligand (FasL) expression. Cytotoxicity of KCs against TCs was monitored by coculturing of (3)H-thymidine TCs with KCs at various effector-to-target ratios. The results were as follows. First, grafts were spontaneously accepted in the LT group with evident apoptosis of TCs; however, inhibition of KCs by pretreatment with GdCl(3) decreased TC apoptosis and shortened the survival of allografts. Second, KCs in the LT group had increased levels of FasL messenger RNA and protein with respect to that in the Gd group. Third, by in vitro cocultivation assays, KCs induced TC apoptosis though elevated expression of FasL, and this process could be blocked by anti-FasL antibody. Fourth, there was a positive correlation between activation of NF-kappaB and FasL expression in KCs and interleukin-4 production in the LT group, and the activation of NF-kappaB was inhibited by pretreatment with GdCl(3). In conclusion, KC-induced depletion of TCs via the Fas/FasL pathway might play a critical role in LT tolerance. However, the tolerance is abrogated by suppression of FasL and IL-4 expression via inhibition of NF-kappaB activity by GdCl(3).
由于库普弗细胞(KCs)在肝移植(LT)耐受中的作用尚未完全明确,我们研究了其在大鼠肝移植同种异体移植物接受过程中的作用。将雄性Sprague-Dawley大鼠随机分为肝移植组(LT组)或用GdCl₃预处理的移植组(Gd组)。术后在指定时间处死大鼠,进行组织学检查,并评估KCs功能、核因子κB(NF-κB)活性及细胞因子产生情况。从同种异体移植物中分离出KCs和T细胞(TCs),以评估Fas/Fas配体(FasL)表达。通过将³H-胸腺嘧啶核苷标记的TCs与KCs按不同效应细胞与靶细胞比例共培养,监测KCs对TCs的细胞毒性。结果如下。首先,LT组的移植物可自发被接受,TCs出现明显凋亡;然而,用GdCl₃预处理抑制KCs后,TCs凋亡减少,同种异体移植物存活时间缩短。其次,与Gd组相比,LT组KCs中FasL信使核糖核酸和蛋白水平升高。第三,通过体外共培养试验,KCs通过升高FasL表达诱导TCs凋亡,且该过程可被抗FasL抗体阻断。第四,LT组KCs中NF-κB激活与FasL表达及白细胞介素-4产生呈正相关,用GdCl₃预处理可抑制NF-κB激活。总之,KCs通过Fas/FasL途径诱导TCs耗竭可能在LT耐受中起关键作用。然而,GdCl₃通过抑制NF-κB活性抑制FasL和白细胞介素-4表达,从而消除了这种耐受。