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首页> 外文期刊>CNS neuroscience & therapeutics. >A high fat, sugar, and salt Western diet induces motor-muscular and sensory dysfunctions and neurodegeneration in mice during aging: Ameliorative action of metformin
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A high fat, sugar, and salt Western diet induces motor-muscular and sensory dysfunctions and neurodegeneration in mice during aging: Ameliorative action of metformin

机译:高脂肪,糖和咸西方饮食在老化期间诱导小鼠的电动肌肉和感官功能障碍和神经变性:二甲双胍的改善作用

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Aims To explore the novel linkage between a Western diet combining high saturated fat, sugar, and salt (HFSS) and neurological dysfunctions during aging as well as Metformin intervention, we assessed cerebral cortex abnormalities associated with sensory and motor dysfunctions and cellular and molecular insights in brains using HFSS-fed mice during aging. We also explored the effect of Metformin treatment on these mice. Methods C57BL/6 mice were fed with HFSS and treated with metformin from 20 to 22?months of age, resembling human aging from 56 to 68?years of age (an entry phase of the aged portion of lifespan). Results The motor and sensory cortexes in mice during aging after HFSS diet showed: (A) decreased motor-muscular and sensory functions; (B) reduced inflammation-resolving Arg-1 + microglia; (C) increased inflammatory iNOs + microglia and TNFα levels; (D) enhanced abundance of amyloid-β peptide and of phosphorylated Tau. Metformin attenuated these changes. Conclusion A HFSS-combined diet caused motor-muscular and sensory dysfunctions, neuroinflammation, and neurodegeneration, whereas metformin counteracted these effects. Our findings show neuroinflammatory consequences of a HFSS diet in aging. Metformin curbs the HFSS-related neuroinflammation eliciting neuroprotection.
机译:旨在探讨西方饮食与衰老期间的高饱和脂肪,糖和盐(HFSS)和神经功能障碍之间的新型联动,以及二甲双胍干预,我们评估了与感官和电动机功能障碍和细胞和分子见解相关的脑皮质异常在老化期间使用HFSS喂养的小鼠进行大脑。我们还探讨了二甲双胍治疗对这些小鼠的影响。方法将C57BL / 6小鼠用HFSS加入并用二甲双胍从20至22个月处理处理,从56到68岁以下的人类衰老(寿命老年部分的进入阶段)。结果HFSS饮食后老龄化术后老鼠的电动机和感觉皮质皮质显示:(a)降低电动肌肉肌肉和感官功能; (b)降低炎症溶解的ARG-1 + MICROGLIA; (c)增加炎症InOS +小胶质细胞和TNFα水平; (d)增强淀粉样蛋白-β肽和磷酸化Tau的丰富。二甲双胍衰减这些变化。结论HFSS-结合的饮食导致电动肌肉肌肉和感官功能障碍,神经炎症和神经变性,而二甲双胍抵消了这些效果。我们的研究结果显示了HFSS饮食的神经炎炎症后果。二甲双胍抑制了HFSS相关的神经炎性引起神经保护作用。

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