百里醌对肥胖小鼠代谢功能和脂肪肝的有益影响

M. Licari, Marco Raffaele, Z. Rosman, J. Schragenheim, L. Bellner, L. Vanella, R. Rezzani, L. Rodella, F. Bonomini, E. Hochhauser, M. Arad, N. Abraham
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引用次数: 8

摘要

目的:黑草种子含有大量的抗氧化剂百里醌(TQ)。因此,我们假设黑草油可以通过TQ的抗氧化特性改善肥胖小鼠的肥胖引起的高血糖,降低血压和OX-LDL。方法:C57B16雄性小鼠从8周龄开始饲喂高脂饲料(HF) 20周。将小鼠分为3组,每组5只:1)瘦肉组,2)HF饲粮,3)HF饲粮,最后8周添加3%TQ。检测炎症生物标志物、抗氧化生物标志物、线粒体生物发生、组织脂肪积累和肝脏脂肪变性。结果:与肥胖小鼠相比,3% TQ处理使耗氧量增加,空腹血糖和血压降低(P<0.05)。在3% TQ的条件下,TQ处理增加了肝脏HO-1的数量和HO活性。此外,线粒体Mfn2、PGC1α、胰岛素受体磷酸化响应TQ,同时降低LDL和OX-LDL (P<0.05)和触觉脂质积累。结论:从根本上说,TQ干预减轻了肥胖介导的耗氧量和空腹血糖的降低,通过增加与hf诱导的低密度脂蛋白消融相关的HO-1水平改善了线粒体生物发生。我们的研究结果表明,TQ在预防代谢性疾病中肥胖相关脂肪变性方面具有潜在的临床作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beneficial Effects Of Thymoquinone On Metabolic Function And Fatty Liver In A Murine Model Of Obesity
Aim: Nigella sativa seeds contain a high amount of Thymoquinone (TQ), an antioxidant. We therefore hypothesized that Nigella sativa oil would, through the antioxidant properties of TQ ameliorate obesity-induced hyperglycemia and decrease blood pressure and OX-LDL in obese mice. Methods: Commencing at eight weeks of age, C57B16 male mice were fed a high fat diet (HF) for 20 weeks. Mice were divided into three groups of five animals each as follows: group 1) Lean, group 2) HF diet, group 3) HF diet treated for the last 8 weeks with 3%TQ. Inflammatory biomarkers, antioxidant biomarkers, mitochondrial biogenesis and tissue fat accumulation and hepatic steatosis were determined. Results: 3% TQ treatment resulted in an increase of oxygen consumption decreased fasting glucose and blood pressure (P<0.05) as compared in obese mice. TQ treatment increased both the quantity of hepatic HO-1, and HO activity in response to 3% TQ. Additionally, mitochondrial Mfn2, PGC1α, insulin receptor phosphorylation in response to TQ while decreased LDL and OX-LDL (P<0.05) and haptic lipid accumulation. Conclusion: Fundamentally, TQ intervention attenuated the obesity-mediated decrease of oxygen consumption, fasting glucose, improved mitochondrial biogenesis through an increase and in levels of HO-1 that is associated with ablated HF-induced LDL. Our findings indicate a potential clinical role for TQ in the prevention of obesity-related steatosis in metabolic disease.
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