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Enhanced Expression of CD80 (B7-1), CD86 (B7-2), and CD40 and Their Ligands CD28 and CD154 in Fulminant Hepatic Failure

机译:剧烈肝衰竭中CD80(B7-1),CD86(B7-2)和CD40及其配体CD28和CD154的增强表达

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摘要

To define a possible role for changes in the regulation of antigen presentation in fulminant hepatic failure (FHF), we studied the expression of co-stimulatory molecules CD80 (B7-1), CD86 (B7-2), and CD40 along with their ligands CD28 and CD154. We analyzed the liver tissue from patients with FHF (n = 18), chronic liver disease (n = 30), and acute hepatitis (n = 3) and from normal controls (n = 9) by immunohistochemistry and examined the temporal relationship between CD80/CD86 and CD40 expression and disease in the mouse models of galactosamine-lipopolysaccharide and galactosamine-tumor-necrosis-factor-induced FHF. In human controls, faint CD80/CD86 immunoreactivity was restricted to Kupffer cells, and CD40 expression was expressed on bile ducts, macrophages, and sinusoidal endothelial cells (SECs). In FHF, immunoreactivity for CD80 and CD86 was observed on significantly higher numbers of cells, including SECs. Increased CD80/CD86 expression corresponded to increased numbers of CD28-positive lymphocytes. The expression of CD40 was also clearly elevated on virtually all cell types in FHF. In both murine models, CD40 and CD80/CD86 expression was up-regulated before tissue damage could be detected. Our data suggest that up-regulated expression of co-stimulatory molecules might lead to an excessive antigen presentation in FHF as an early step in the pathogenesis before the onset of tissue damage.
机译:为了定义在暴发性肝衰竭(FHF)中抗原呈递调节中可能的作用,我们研究了共刺激分子CD80(B7-1),CD86(B7-2)和CD40及其配体的表达CD28和CD154。我们通过免疫组织化学分析了FHF(n = 18),慢性肝病(n = 30)和急性肝炎(n = 3)和正常对照组(n = 9)患者的肝组织,并研究了CD80与CD80之间的时间关系/ CD86和CD40在半乳糖胺-脂多糖和半乳糖胺-肿瘤坏死因子诱导的FHF小鼠模型中的表达和疾病。在人类对照中,淡淡的CD80 / CD86免疫反应仅限于Kupffer细胞,而CD40的表达在胆管,巨噬细胞和正弦内皮细胞(SEC)中表达。在FHF中,在包括SEC在内的大量细胞中观察到了CD80和CD86的免疫反应性。 CD80 / CD86表达增加对应于CD28阳性淋巴细胞数目增加。在FHF中,几乎所有细胞类型的CD40表达也明显升高。在两种鼠模型中,在可以检测到组织损伤之前,CD40和CD80 / CD86的表达都被上调。我们的数据表明,共刺激分子的表达上调可能导致FHF中过量的抗原呈递,这是组织损伤发作之前发病机理的早期步骤。

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