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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Impaired Fast Network Oscillations and Mitochondrial Dysfunction in a Mouse Model of Alpha-synucleinopathy (A30P)
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Impaired Fast Network Oscillations and Mitochondrial Dysfunction in a Mouse Model of Alpha-synucleinopathy (A30P)

机译:在α-突触核苷酸核病症的小鼠模型(A30P)中的快速网络振荡和线粒体功能障碍受损(A30P)

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Intracellular accumulation of alpha-synuclein (alpha-syn) is a key pathological process evident in Lewy body dementias (LBDs), including Parkinson's disease dementia (PDD) and dementia with Lewy bodies (DLB). LBD results in marked cognitive impairments and changes in cortical networks. To assess the impact of abnormal alpha-syn expression on cortical network oscillations relevant to cognitive function, we studied changes in fast beta/gamma network oscillations in the hippocampus in a mouse line that over-expresses human mutant alpha-syn (A30P). We found an age-dependent reduction in the power of the gamma (20-80 Hz) frequency oscillations in slices taken from mice aged 9-16 months (9+A30P), that was not present in either young 2-6 months old (2+A30P) mice, or in control mice at either age. The mitochondrial blockers potassium cyanide and rotenone both reduced network oscillations in a concentration-dependent manner in aged A30P mice and aged control mice but slices from A30P mice showed a greater reduction in the oscillations. Histochemical analysis showed an age-dependent reduction in cytochrome c oxidase (COX) activity, suggesting a mitochondrial dysfunction in the 9+A30P group. A deficit in COX IV expression was confirmed by immunohistochemistry. Overall, our data demonstrate an age-dependent impairment in mitochondrial function and gamma frequency activity associated with the abnormal expression of alpha-syn. These findings provide mechanistic insights into the consequences of over-expression of alpha-syn which might contribute to cognitive decline. (C) 2018 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:α-突触核蛋白(Alpha-Syn)的细胞内积累是Lewy体痴呆(LBDS)中明显的关键病理过程,包括帕金森病的疾病痴呆(PDD)和具有Lewy体(DLB)的痴呆。 LBD导致显着的认知障碍和皮质网络的变化。为了评估α-SYN表达异常对与认知功能相关的皮质网络振荡的影响,我们在鼠标线中研究了海马的快速β/伽马网络振荡的变化,以表达人突变α-SYN(A30P)。我们发现从9-16个月(9 + A30P)的小鼠中γ(20-80Hz)频率振荡的伽马(20-80Hz)频率振荡的功率依赖性降低,其中杨少年2-6个月( 2 + A30P)小鼠或在任一年龄的对小鼠中。线粒体阻滞剂氰化钾和旋转酮以浓度依赖于浓度的方式,在老年的A30P小鼠和老化的对照小鼠中,但是来自A30P小鼠的切片表明振荡的减少更大。组织化学分析表明,细胞色素C氧化酶(COX)活性的年龄依赖性还原,表明9 + A30P组中的线粒体功能障碍。通过免疫组织化学证实了Cox IV表达中的一种缺陷。总体而言,我们的数据表明了与α-Syn的异常表达相关的线粒体功能和γ频率活动中的年龄依赖性损伤。这些调查结果为alpha-syn的过度表达的后果提供了机械洞察力,这可能有助于认知衰退。 (c)2018年IBRO。 elsevier有限公司出版。保留所有权利。

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