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Effects of peanut shell extract on rats with acute renal failure

机译:花生壳提取物对急性肾功能衰竭大鼠的影响

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The aim of the present study was to determine the protective effect of peanut shell extract (EPS) on rats with acute renal failure(ARF)and possible mechanism of protection. Acute renal failure was induced by glycerol , which was injected intramuscularly in rats. Healthy male SD rats were randomly divided into 4 groups: ARF + NS group, ARF + EPS group, NS + NS group and NS + EPS group. The level of renal function, which was reflect by blood urea nitrogen (BUN) and creatinine (Cre) levels, was determined using biochemical methods. The mechanism was explored by measuring the effects of malondialdehyde(MDA), glutathione(GSH) and nitric oxide(NO) levels in serum or kidney, as well as on the involvement of nitric oxide synthases (NOS) in the hypothalamic paraventricular nucleus. After injection of glycerol in rats, BUN, Cre and NO levels of ARF rats were significantly increased, as well as MDA in renal cortical homogenate and in serum. GSH levels were significantly lower in renal cortical homogenate and in serum. Immunohistochemistry showed that an obvious increase of neuronal nitric oxide synthase- immunoreactivity(nNOS-IR) in the hypothalamic paraventricular nucleus; Pretreatment with EPS in ARF rats caused BUN and Cre levels significantly lower. But compared with the NS + NS group, no significant difference between groups of rats. GSH in serum and renal cortical were observed significantly increased. Renal cortex homogenate MDA levels were significantly lower, however NO levels in renal cortex were significantly increased; nNOS-IR in the hypothalamic paraventricular nucleus were further enhanced, significantly higher than the ARF group. The results indicated peanut shell extract significantly improved renal function in rats with ARF, significantly reduced renal oxidative damage and increased NO levels, nNOS-IR in the hypothalamic paraventricular nucleus. Our results suggested that peanut shell extract have a strong renal protective effect against glycerol-induced ARF. - - NO-dependent neural pathway in the hypothalamic paraventricular nucleus may be part of possible mechanism of renal protection.
机译:本研究的目的是确定花生壳提取物(EPS)对急性肾功能衰竭(ARF)的大鼠的保护作用及可能的保护机制。甘油诱导急性肾功能衰竭,甘油在大鼠中注射肌肉内。健康的雄性SD大鼠随机分为4组:ARF + NS组,ARF + EPS组,NS + NS组和NS + EPS组。使用生物化学方法测定血液尿素氮(BUN)和肌酐(CRE)水平反射的肾功能水平。通过测量血清或肾脏中丙二醛(MDA),谷胱甘肽(MDA),谷胱甘肽(NO)水平的影响,以及在下丘脑静脉内核中的一氧化氮合成酶(NOS)的累积来探索该机制。在大鼠中注射甘油后,BUN,CRE和NO水平的ARF大鼠明显增加,以及MDA在肾皮质匀浆和血清中。肾脏皮质匀浆和血清中GSH水平显着降低。免疫组织化学表明,下丘脑椎间囊核中神经元一氧化氮合酶 - 免疫反应性(NNOS-IR)明显增加;用ARF大鼠的EPS预处理引起面包和CRE水平显着降低。但与NS + NS组相比,大鼠组之间没有显着差异。观察到GSH在血清和肾皮层中显着增加。肾皮质匀浆MDA水平显着降低,但肾皮层的水平显着增加;进一步提高下丘脑椎间盘核中的NNOS-IR,显着高于ARF组。结果表明,花生壳提取物显着改善了ARF大鼠的肾功能,显着降低了肾氧化损伤并增加了下丘脑椎间囊中的NNOS-IR。我们的研究结果表明,花生壳提取物对甘油诱导的ARF具有强烈的肾脏保护作用。 - 下丘脑椎间盘核中的无依赖性神经途径可能是肾保护机制可能的一部分。

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