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Effects of diet-induced obesity and voluntary exercise in a tauopathy mouse model: Implications of persistent hyperleptinemia and enhanced astrocytic leptin receptor expression

机译:饮食引起的肥胖和自愿运动对tauopathy小鼠模型的影响:持续性高瘦素血症和星形细胞瘦素受体表达增强的意义

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The number of patients with Alzheimer's disease (AD) is increasing worldwide, and available drugs have shown limited efficacy. Hence, preventive interventions and treatments for presymptomatic AD are currently considered very important. Obesity rates have also been increasing dramatically and it is an independent risk factor of AD. Therefore, for the prevention of AD, it is important to elucidate the pathomechanism between obesity and AD. We generated high calorie diet (HCD)-induced obese tauopathy model mice (PS19), which showed hyperleptinemia but limited insulin resistance. HCD enhanced tau pathology and glial activation. Conversely, voluntary exercise with a running wheel normalized the serum leptin concentration without reducing body weight, and restored the pathological changes induced by HCD. Thus, we speculated that persistent hyperleptinemia played an important role in accelerating pathological changes in PS19 mice. Leptin primarily regulates food intake and body weight via leptin receptor b (LepRb). Interestingly, the nuclear staining for p-STAT3, which was activated by LepRb, was decreased in hippocampal neurons in HCD PS19 mice, indicating leptin resistance. Meanwhile, astroglial activation and the astrocytic expression of a short LepR isoform, LepRa, were enhanced in the hippocampus of HCD PS19 mice. Real-time PCR analysis demonstrated that leptin increased mRNA levels for pro-inflammatory cytokines including IL-1 beta and TNF-alpha in primary cultured astrocytes from wild type and LepRb-deficient mice. These observations suggest that persistent hyperleptinemia caused by obesity induces astrocytic activation, astrocytic leptin hypersensitivity with enhanced LepRa expression, and enhanced inflammation, consequently accelerating tau pathology in PS19 mice. (C) 2014 The Authors. Published by Elsevier Inc.
机译:全球范围内患有阿尔茨海默氏病(AD)的患者人数正在增加,并且可用药物显示出有限的疗效。因此,目前认为症状前AD的预防性干预和治疗非常重要。肥胖率也急剧增加,并且是AD的独立危险因素。因此,为了预防AD,阐明肥胖与AD之间的致病机制很重要。我们生成了高卡路里饮食(HCD)诱导的肥胖tauopathy模型小鼠(PS19),该小鼠表现出高瘦素血症,但胰岛素抵抗受限。 HCD增强了tau病理学和神经胶质激活。相反,用转轮进行的自愿运动可在不降低体重的情况下使血清瘦素浓度正常化,并恢复了由HCD引起的病理变化。因此,我们推测持续的高瘦素血症在加速PS19小鼠的病理变化中起重要作用。瘦素主要通过瘦素受体b(LepRb)调节食物的摄入量和体重。有趣的是,在HCD PS19小鼠的海马神经元中,由LepRb激活的p-STAT3的核染色减少了,表明对瘦蛋白的抵抗力。同时,在HCD PS19小鼠的海马中,星形胶质激活和短LepR亚型LepRa的星形细胞表达增强。实时PCR分析表明,瘦素增加了野生型和LepRb缺陷小鼠原代培养的星形胶质细胞中促炎细胞因子包括IL-1 beta和TNF-α的mRNA水平。这些观察结果表明,由肥胖引起的持续性高瘦素血症诱导星形细胞活化,具有增强的LepRa表达和增强的炎症的星形细胞瘦素超敏反应,从而加速了PS19小鼠的tau病理。 (C)2014作者。由Elsevier Inc.发布

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