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Inflammatory bowel and oxidative stress changes in an experimental model of portal hypertension: action of N-acetylcysteine

机译:炎症性肠和氧化应激在门静脉高压的实验模型中的变化:N-乙酰半胱氨酸的作用

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Introduction: Portal hypertension (PH) is characterized by vasodilatation in the portal system and the bowel is one of the severely affected organs. N-acetylcysteine (NAC) is a molecule with important properties and widely used in clinical practice. Objective: To evaluate NAC action in the bowel of animals submitted to the animal model of partial portal vein ligation (PPVL). Methods: 18 male Wistar rats were divided into three experimental groups ( n = 6): sham-operated (SO), PPVL, and PPVL + NAC. On the 8th day after surgery, N-acetylcysteine (10 mg/kg, ip) was administered daily for 7 days. On the 15th day the animalsa?? bowel was collected for oxidative stress analysis, immunohistochemistry and Western blot. We evaluated the expression of NF-KB and TNF-?± by immunohistochemistry and of iNOS by Western blot. Lipid peroxidation was assessed by TBARS technique, and the activities of antioxidant enzymes superoxide dismutase (SOD) and glutation peroxidase (GPx) were checked. Results: We observed an increased expression of NF-KB and TNF-?± in PPVL group, and an increased iNOS expression assessed by Western blot. NAC reduced the expression of all proteins evaluated. We also observed an increase in oxidative stress in the bowel of mice PPVL group compared to controls (SO), and NAC was effective in reducing these values in PPVL + NAC group. Also, a reduction in the activity of SOD and GPx enzymes was observed in the diseased group, and NAC was able to restore the activity of the enzymes assessed. Conclusion: We suggest the anti-inflammatory and antioxidant action of NAC in the bowel of animals submitted to PPVL model.
机译:介绍:门静脉高压血压(pH)的特点是门户系统中的血管扩张,肠是受影响的受器官的一个。 N-乙酰半胱氨酸(NAC)是具有重要性质并广泛用于临床实践的分子。目的:评价肠道动物肠道动物的NAC作用,分为部分门门静脉连接(PPV1)。方法:将18只雄性Wistar大鼠分为三个实验组(n = 6):假手术(SO),PPV1和PPVL + NAc。在手术后的第8天,每日施用N-乙酰半胱氨酸(10mg / kg,IP)7天。在第15天的动物?收集肠道氧化应激分析,免疫组化和Western印迹。我们通过免疫组织化学和蛋白质印迹评估了NF-KB和TNF-α的表达。通过TBAR技术评估脂质过氧化,检查抗氧化酶超氧化物歧化酶(SOD)和冰川释放酶(GPX)的活性。结果:我们观察到PPV1组中NF-KB和TNF-α±的表达增加,并通过Western印迹评估的欧姆斯表达增加。 NAC降低了评价所有蛋白质的表达。与对照(SO)相比,我们还观察到小鼠PPVL组肠道氧化应激的增加,并且NAC有效降低PPVL + NAC基团的这些值。而且,在患病组中观察到SOD和GPX酶的活性的降低,NAC能够恢复评估的酶的活性。结论:我们建议NAC在提交给PPVL模型的动物肠道中的抗炎和抗氧化作用。

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