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Potential effects of L-NAME on alcohol-induced oxidative stress.

机译:L-NAME对酒精诱导的氧化应激的潜在影响。

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AIM: Nitric oxide (NO) is a highly reactive oxidant synthesized from L-arginine by nitric oxide synthase (NOS). NO may cause injury through the generation of potent radicals. Nw- nitro-L-arginine methyl ester (L-NAME) is a non-selective inhibitor of NOS. We aimed to evaluate whether L-NAME treatment had protective effects against oxidative stress in rats intragastrically fed with ethanol during a 4 wk-period. METHODS: Thirty-six male Wistar rats were divided into 3 equal groups: group 1 (control group-isocaloric dextrose was given), group 2 (6 g/kg.d ethanol-induced group) and group 3 (both ethanol 6 g/kg.d and L-NAME 500 mg/L in drinking water-given group). Animals were sacrificed at the end of 4 wk-experimental period, and intracardiac blood and liver tissues were obtained. Biochemical measurements were performed both in plasma and in homogenized liver tissues. Alanine amino transferase (ALT), aspartate amino transferase (AST), malondialdehyde (MDA), NO, superoxide dismutase (SOD), catalase (CAT) andglutathione (GSH) levels were measured by spectrophotometry. RESULTS: ALT and AST in group 2 (62 U/L and 128 U/L, respectively) were higher than those in group 1 (24 U/L and 38 U/L) and group 3 (37 U/L and 81 U/L) (P<0.001 for both). Plasma and tissue levels of MDA in group 2 (4.66 micromol/L and 0.55 nmol/mg protein) were higher than in group 1 (2.65 micromol/L and 0.34 nmol/mg protein) and group 3 (3.43 micromol/L and 0.36 nmol/mg protein) (P<0.001 for both). Plasma and liver tissue levels of NO in group 2 (54.67 micromol/L and 586.50 nmol/mg protein) were higher than in group 1 (34.67 micromol/L and 435.33 nmol/mg protein) and group 3 (27.50 micromol/L and 412.75 nmol/mg protein) (P<0.001 for both). Plasma and liver tissue SOD activities in group 2 (15.25 U/mL and 5.38 U/ mg protein, respectively) were lower than in group 1 (20.00 U/mL and 8.13 U/ mg protein) and group 3 (19.00 U/mL and 6.93 U/ mg protein) (P<0.001 for both). Plasma and liver tissue CAT activities in group 2 (145 U/mL and 37 U/ mg protein,respectively) were lower than in group 1 (176 U/mL and 73 U/mg protein) and group 3 (167 U/mL and 61 U/mg protein) (P<0.001 for both). Meanwhile, erythrocytes and liver tissue levels of GSH in group 2 (4.12 mg/g Hb and 5.38 nmol/mg protein, respectively) were lower than in group 1 (5.52 mg/g Hb and 4.49 nmol/mg protein) and group 3 (5.64 mg/g Hb and 4.18 nmol/mg protein) (P<0.001 for both). CONCLUSION: Our findings show that L-NAME may produce a restorative effect on ethanol-induced liver damage via decreasing oxidative stress and increasing antioxidant status.
机译:目的:一氧化氮(NO)是由L-精氨酸通过一氧化氮合酶(NOS)合成的高反应性氧化剂。 NO可能会通过产生有效的自由基而造成伤害。 Nw-硝基-L-精氨酸甲酯(L-NAME)是NOS的非选择性抑制剂。我们旨在评估L-NAME治疗在4周内胃内饲喂乙醇的大鼠是否对氧化应激具有保护作用。方法:将36只Wistar雄性大鼠分为3组,分别为第1组(给予对照组-等热量葡萄糖),第2组(6 g / kg.d乙醇诱导的组)和第3组(均为乙醇6 g / kg)。饮用水给定组中的kg.d和L-NAME 500 mg / L)。在4周实验期结束时处死动物,并获得心脏内血液和肝组织。在血浆和均质肝组织中均进行了生化测量。分光光度法测定了丙氨酸氨基转移酶(ALT),天冬氨酸氨基转移酶(AST),丙二醛(MDA),一氧化氮,超氧化物歧化酶(SOD),过氧化氢酶(CAT)和谷胱甘肽(GSH)的含量。结果:第2组的ALT和AST(分别为62 U / L和128 U / L)高于第1组(24 U / L和38 U / L)和第3组(37 U / L和81 U) / L)(两者均P <0.001)。第2组(4.66 micromol / L和0.55 nmol / mg蛋白质)的血浆MDA和组织水平高于第1组(2.65 micromol / L和0.34 nmol / mg蛋白质)和第3组(3.43 micromol / L和0.36 nmol / mg蛋白质) / mg蛋白)(两者均P <0.001)。第2组(54.67 micromol / L和586.50 nmol / mg蛋白)的血浆和肝组织中的NO水平高于第1组(34.67 micromol / L和435.33 nmol / mg蛋白)和第3组(27.50 micromol / L和412.75) (nmol / mg蛋白)(两者均P <0.001)。第2组(分别为15.25 U / mL和5.38 U / mg蛋白)的血浆和肝组织SOD活性低于第1组(20.00 U / mL和8.13 U / mg蛋白)和第3组(19.00 U / mL和6.93 U / mg蛋白)(两者均P <0.001)。第2组(分别为145 U / mL和37 U / mg蛋白)的血浆和肝组织CAT活性低于第1组(分别为176 U / mL和73 U / mg蛋白)和第3组(167 U / mL和61 U / mg蛋白)(两者均P <0.001)。同时,第2组(分别为4.12 mg / g Hb和5.38 nmol / mg蛋白)的GSH红细胞和肝组织水平低于第1组(第5.52 mg / g Hb和4.49 nmol / mg蛋白)和第3组( 5.64 mg / g Hb和4.18 nmol / mg蛋白(两者均P <0.001)。结论:我们的研究结果表明,L-NAME可能通过降低氧化应激和增加抗氧化剂状态而对乙醇诱导的肝损伤产生修复作用。

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