F. V. Francisqueti-Ferron, J. Silva, J. Garcia, A. Ferron, H. Kano, C. C. V. A. Silva, M. R. Costa, G. A. Nai, F. Moreto, C. Corrêa
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引用次数: 1
摘要
非酒精性脂肪性肝病(NAFLD)是肝脏疾病的主要原因。该疾病涉及的生理病理过程包括代谢综合征(MetS)成分(中心性肥胖、血脂异常、胰岛素抵抗/ 2型糖尿病、高血压)、遗传和饮食因素,包括不饱和脂肪和加糖饮料,这些因素能够导致炎症和氧化应激,以及与NAFLD进展和严重程度相关的条件。γ -米黄醇(γOz)是一种从米脑油中提取的营养保健品,从免疫到代谢,对健康有许多好处。本研究旨在探讨γ - oz对高糖/高脂饮食动物非酒精性脂肪肝相关生理病理过程的预防作用。将雄性Wistar大鼠(±187 g)随机分为4个实验组,分别在30周内饲喂:对照饲粮(C, n = 6)、对照饲粮加γOz (C + γOz, n = 6)、高糖/脂肪饲粮(HSF, n = 6)、高糖/脂肪饲粮加γOz (HSF + γOz, n = 6)。HSF组也给予水加蔗糖(25%)。在饲粮中添加γ - oz至终浓度0.5%。HSF组出现MetS、肝脏炎症和氧化应激、小泡和大泡脂肪变性。HSF + γ - oz不受这些变化的影响。可以得出结论,γ -米甲醇在高糖/高脂肪饮食的动物中有效调节与非酒精性脂肪性肝病相关的生理病理过程。
Preventive Effect of Gamma-Oryzanol on Physiopathological Process Related to Nonalcoholic Fatty Liver Disease in Animals Submitted to High Sugar/Fat Diet
Nonalcoholic fatty liver disease (NAFLD) is the main cause of liver disease. The physiopathological processes involved in the disease are metabolic syndrome (MetS) components (central obesity, dyslipidemia, insulin resistance/type 2 diabetes, hypertension), genetic, and dietary factors, including unsaturated fats and sweetened beverages, which are able to lead to inflammation and oxidative stress, conditions associated with progression and severity of NAFLD. Gamma-oryzanol (γOz) is a nutraceutical obtained from rice brain oil with many benefits to health, from immunological to metabolic. The aim of this study is to test the preventive effect of γOz on the physiopathological process related to nonalcoholic fatty liver disease in animals submitted to high sugar/fat diet. Male Wistar rats (±187 g) were randomly divided into four experimental groups to receive: control diet (C, n = 6), control diet plus γOz (C + γOz, n = 6), high sugar/fat diet (HSF, n = 6), or high sugar/fat diet plus γOz (HSF + γOz, n = 6) during 30 weeks. HSF groups also received water plus sucrose (25%). γOz was added to diets to reach 0.5% of final concentration. The HSF group presented MetS, liver inflammation and oxidative stress, and micro and macrovesicular steatosis. HSF plus γOz was protected against these changes. It is possible to conclude that gamma-oryzanol was effective in modulating the physiopathological process related to nonalcoholic fatty liver disease in animals submitted to a high sugar/fat diet.