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Hepatoprotective role of ganoderma lucidum polysaccharide against BCG-induced immune liver injury in mice

机译:灵芝多糖对卡介苗诱导的小鼠免疫性肝损伤的保护作用

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摘要

AIM: To examine the effect of ganoderma lucidum polysaccharide (GLP) on the immune liver injury induced by BCG infection, and investigate the relationship between degrees of hepatic damage and NO production in mice.METHODS: Immune hepatic injury was markedly induced by BCG-pretreatment (125 mg·kg-1, 2-week, iv) or by BCG-pretreatment plus lipopolysaccharide (LPS, 125 μg·kg-1, 12-hour, iv) in mice in vivo. Hepatocellular damage induced by BCG-pretreated plus inflammatory cytokines mixture (CM), which was included TNF-α, IL-1β, IFN-γ and LPS in culture medium in vitro. Administration of GLP was performed by oral or incubating with culture medium at immune stimuli simultaneity. Liver damage was determined by activity of alanine aminotransferase (ALT) in serum and in hepatocytes cultured supernatant, by liver weight changes and histopathological examination. NO production in the cultured supernatant was determined by the Griess reaction. Moreover, inducible nitric oxide synthase (iNOS) protein expression was also examinated by immunohistochemical method.RESULTS: Immune hepatic injury was markedly induced by BCG or BCG plus inflammatory cytokines in BALB/c mice in vivo and in vitro. Under BCG-stimulated condition, augment of the liver weight and increase of the serum/supernatant ALT level were observed, as well as granuloma forming and inflammatory cells soakage were observed by microscopic analysis within liver tissues. Moreover, NO production was also increased by BCG or/and CM stimuli in the culture supernatant, and a lot of iNOS positive staining was observed in BCG-prestimulated hepatic sections. Application of GLP significantly mitigated hepatic tumefaction, decreased ALT enzyme release and NO production in serum/supernatant, improved the pathological changes of chronic and acute inflammation induced by BCG-stimuli in mice. Moreover, the immunohistochemical result showed that GLP inhibited iNOS protein expression in BCG-immune hepatic damage model.CONCLUSION: The present study indicates that NO participates in immune liver injury induced by Mycobacterium bovis BCG infection. The mechanisms of protective roles by GLP for BCG-induced immune liver injury may be due to influence NO production in mice.
机译:目的:研究灵芝多糖(GLP)对卡介苗(BCG)感染所致免疫性肝损伤的影响,并探讨小鼠肝损伤程度与NO产生的关系。方法:卡介苗预处理可明显诱导免疫性肝损伤。 (125 mg·kg -1 ,2周,静脉注射)或通过BCG预处理加脂多糖(​​LPS,125μg·kg -1 ,12小时,静脉注射) )在体内小鼠中。 BCG预处理加炎性细胞因子混合物(CM)诱导的肝细胞损伤,在体外培养基中包括TNF-α,IL-1β,IFN-γ和LPS。通过口服或与培养基同时免疫刺激来进行GLP的施用。通过血清和肝细胞培养上清液中丙氨酸氨基转移酶(ALT)的活性,肝脏重量的变化和组织病理学检查来确定肝损伤。通过Griess反应确定培养的上清液中没有NO产生。此外,免疫组化方法还检测了诱导型一氧化氮合酶(iNOS)蛋白的表达。结果:BCG或BCG加炎性细胞因子在体内外均明显诱导了免疫性肝损伤。在卡介苗刺激的条件下,通过肝组织内的显微镜分析观察到肝脏重量增加和血清/上清液ALT水平升高,以及肉芽肿形成和炎性细胞吸收。此外,培养上清液中的BCG或/和CM刺激也增加了NO的产生,并且在BCG刺激的肝切片中观察到了许多iNOS阳性染色。 GLP的应用可显着减轻肝脏肿瘤,降低血清/上清液中ALT酶的释放和NO的产生,改善小鼠BCG刺激引起的慢性和急性炎症的病理变化。此外,免疫组织化学结果表明,GLP抑制了BCG免疫肝损伤模型中iNOS蛋白的表达。结论:本研究表明NO参与牛分枝杆菌BCG感染引起的免疫性肝损伤。 GLP对BCG诱导的免疫性肝损伤的保护作用机制可能是由于影响了小鼠的NO产生。

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