丰富环境改善阿尔茨海默病的基础研究进展
PDF下载 (17688)闫佩云1,2,何丹妮1,2,张俊芳1,2*.丰富环境改善阿尔茨海默病的基础研究进展[J].宁波大学学报(理工版),2017,30(6):98-103.DOI:
YAN Pei-yun1,2,HE Dan-ni1,2,ZHANG Jun-fang1,2*.Research process of the role of environmental enrichment in improving Alzheimers disease[J].Journal of Ningbo University(Natural Science & Engineering Edition),2017,30(6):98-103.DOI:
| Title: | Research process of the role of environmental enrichment in improving Alzheimers disease |
| 作者: | 闫佩云1, 2, 何丹妮1, 2, 张俊芳1, 2* |
| Author(s): | YAN Pei-yun1, 2, HE Dan-ni1, 2, ZHANG Jun-fang1, 2* |
| 关键词: | 阿尔茨海默病; 丰富环境; 神经可塑性; β-淀粉样蛋白; Tau蛋白 |
| Keywords: | Alzheimers disease (AD); environmental enrichment; neural plasticity; Amyloid protein (A); Tau protein |
| 分类号: | R338.64 . |
| 文献标识码: | A |
| 摘要: | 阿尔茨海默病(AD)是一种以进行性认知障碍和记忆能力损害为主的神经退行性疾病. 虽然针对AD发病机制和治疗的研究众多, 但目前仍缺乏十分有效的治疗手段. 一些研究显示, 通过改变生活环境和方式, 进行各种体育活动, 在预防及改善AD方面发挥重要作用. 丰富环境是指相对于标准实验室饲养条件而言可以增强动物感觉、认知和运动等各方面刺激的实验室饲养条件, 丰富环境可增加海马神经发生, 增强突触可塑性及提高认知行为等. 从最初发现丰富环境对神经退行性病变神经元丢失有改善作用之后, 关于丰富环境与AD的研究层出不穷, 从多角度如β淀粉样蛋白及Tau蛋白磷酸化等方面阐释丰富环境对AD的改善作用及相关机制. 本文就丰富环境对AD的改善作用及相关调节机制做一综述. |
| Abstract: | Alzheimer’s disease (AD) is the most common neurodegenerative disease with progressive cognitive and memory impairment. Despite intensive study about its?mechanism?and?treatment, there is still no effective treatment at present. Studies find that changing the living environment and way, strengthening physical exercise can prevent and relieve AD. One broad definition of environmental enrichment (EE) is a housing condition that facilitates enhanced sensory, cognitive and motor stimulation relative to standard housing conditions. EE has been shown to confer benefits to hippocampal neurogenesis, synaptic plasticity, cognitive performance and so on. Since ameliorating neuron loss by EE was initially found in the neurodegenerative disorders, the research on EE and AD has been widely reported such as ameliorating related mechanisms on Amyloid β protein (Aβ) and Tau protein from different views. The authors review the latest progress in the beneficial effects of EE on AD and the underlying mechanisms. |
| 参考文献 /References: | [1].SELKOE D J, HARDY J. The amyloid hypothesis of Alzheimer’s disease at 25 years[J]. EMBO Molecular Medicine, 2016, 8(6):595-608. [2].GEIGER A M, WASSERMAN B H. Relationship of occlusion and periodontal disease: Part IX-incisor inclination and periodontal status[J]. Angle Orthodontist, 1976, 46(2):99-110. [3].VAN DELLEN A, BLAKEMORE C, DEACON R, et al. Delaying the onset of Huntington’s in mice[J]. Nature, 2000, 404(6779):721-722. [4].DEZSI G, OZTURK E, SALZBERG M R, et al. Environ- mental enrichment imparts disease-modifying and trans- generational effects on genetically-determined epilepsy and anxiety[J]. Neurobiology of Disease, 2016, 93:129- 136. [5].THOMAS J L, NELSON P, KARTHIKEYAN S, et al. Exercise and environmental enrichment as enablers of task-specific neuroplasticity and stroke recovery[J]. Neurotherapeutics, 2016, 13(2):395-402. [6].谢鸿宇, 吴毅. 丰富环境在神经退行性疾病中的应用新进展[J]. 中国康复医学杂志, 2011, 26(6):592-596. [7].赵燕, 毕月斋, 王珊, 等. 丰富环境对阿尔茨海默病脑功能康复影响的研究进展[J]. 中国康复医学杂志, 2014, 29(7):693-696. [8].BERARDI N, BRASCHI C, CAPSONI S, et al. Environmental enrichment delays the onset of memory deficits and reduces neuropathological hallmarks in a mouse model of Alzheimer-like neurodegeneration[J]. Journal of Alzheimer’s Disease, 2007, 11(11):359-370. [9].周春妮, 蒋林, 张毅, 等. 跑步锻炼对APP/PS1双转基因AD模型小鼠大脑白质及白质内有髓神经纤维的作用[J]. 重庆医科大学学报, 2015(1):1-7. [10].POLITO L, CHIERCHIA A, TUNESI M, et al. Environmental enrichment lessens cognitive decline in APP23 mice without affecting brain sirtuin expression[J]. Journal of Alzheimer’s Disease, 2014, 42(3):851-864. [11].BL?ZQUEZ G, CA?ETE T, TOBE?A A, et al. Cognitive and emotional profiles of aged Alzheimer’s disease (3×TgAD) mice: effects of environmental enrichment and sexual dimorphism[J]. Behavioural Brain Research, 2014, 268(4):185-201. [12].吴晓强, 王琰萍, 余波, 等. 丰富环境对快速衰老小鼠行为及一氧化氮合成酶表达的影响[J]. 中国实用神经疾病杂志, 2015(24):4-6. [13].DONG J, ZHOU M, WU X, et al. Memantine combined with environmental enrichment improves spatial memory and alleviates Alzheimer’s disease-like pathology in senescence-accelerated prone-8 (SAMP8) mice[J]. The Journal of Biomedical Research, 2012, 26(6):439-447. [14].GORTZ N, LEWEJOHANN L, TOMM M, et al. Effects of environmental enrichment on exploration, anxiety, and memory in female TgCRND8 Alzheimer mice[J]. Behavioural Brain Research, 2008, 191(1):43-48. [15].PIETROPAOLO S, FELDON J, YEE B K. Environ- mental enrichment eliminates the anxiety phenotypes in a triple transgenic mouse model of Alzheimer’s disease[J]. Cognitive, Affective & Behavioral Neuroscience, 2014, 14(3):996-1008. [16].HERRING A, AMBR?E O, TOMM M, et al. Environmental enrichment enhances cellular plasticity in transgenic mice with Alzheimer-like pathology[J]. Experimental Neurology, 2009, 216(1):184-192. [17].CHOI S H, VEERARAGHAVALU K, LAZAROV O, et al. Non-cell-autonomous effects of presenilin 1 variants on enrichment-mediated hippocampal progenitor cell proliferation and differentiation[J]. Neuron, 2008, 59(4): 568-580. [18].BARAK B, SHVARTS-SEREBRO I, MODAI S, et al. Opposing actions of environmental enrichment and Alzheimer’s disease on the expression of hippocampal microRNAs in mouse models[J]. Translational Psychiatry, 2013(3):304-316. [19].HU Y S, XU P, PIGINO G, et al. Complex environment experience rescues impaired neurogenesis, enhances synaptic plasticity, and attenuates neuropathology in familial Alzheimer’s disease-linked APPswe/PS1 E9 mice[J]. The FASEB Journal, 2010, 24(6):1667-1681. [20].黄娴, 张凌, 李雪. 老年痴呆症模型小鼠蛋白磷酸化与短期丰富环境刺激的影响[J]. 中国组织工程研究, 2012, 16(2):269-272. [21].LI S, JIN M, ZHANG D, et al. Environmental novelty activates beta2-adrenergic signaling to prevent the impairment of hippocampal LTP by Abeta oligomers[J]. Neuron, 2013, 77(5):929-941. [22].COTEL M C, JAWHAR S, CHRISTENSEN D Z, et al. Environmental enrichment fails to rescue working memory deficits, neuron loss, and neurogenesis in APP/PS1KI mice[J]. Neurobiology of Aging, 2012, 33(1): 96-107. [23].HENEKA M T, RODR?GUEZ J J, VERKHRATSKY A. Neuroglia in neurodegeneration[J]. Brain Research Reviews, 2010, 63(1/2):189-211. [24].BEAUQUIS J, PAV?A P, POMILIO C, et al. Enviro- nmental enrichment prevents astroglial pathological changes in the hippocampus of APP transgenic mice, model of Alzheimer’s disease[J]. Experimental Neurology, 2013, 239(1):28-37. [25].XU H, GELYANA E, RAJSOMBATH M, et al. Environmental enrichment potently prevents microglia- mediated neuroinflammation by human amyloid β-protein oligomers[J]. Journal of Neuroscience, 2016, 36(35): 9041-9056. [26].LAZAROV O, ROBINSON J, TANG Y P, et al. Environmental enrichment reduces Abeta levels and amyloid deposition in transgenic mice[J]. Cell, 2005, 120(5):701-713. [27].HERRING A, LEWEJOHANN L, PANZER A L, et al. Preventive and therapeutic types of environmental enrich- ment counteract beta amyloid pathology by different molecular mechanisms[J]. Neurobiology of Disease, 2011, 42(3):530-538. [28].AMBR E O, LEIMER U, HERRING A, et al. Reduction of amyloid angiopathy and Aβ plaque burden after enriched housing in TgCRND8 mice[J]. The American Journal of Pathology, 2006, 169(2):544-552. [29].HERRING A, YASIN H, AMBR?E O, et al. Environmental enrichment counteracts Alzheimer’s neurovascular dysfunction in TgCRND8 mice[J]. Brain Pathol, 2008, 18(1):32-39. [30].MAESAKO M, UEMURA K, KUBOTA M, et al. Environmental enrichment ameliorated high-fat diet- induced Aβ deposition and memory deficit in APP transgenic mice[J]. Neurobiology of Aging, 2012, 33(5): 1011 e11-e23. [31].JANKOWSKY J L, XU G L, FROMHOLT D, et al. Environmental enrichment exacerbates amyloid plaque formation in a transgenic mouse model of Alzheimer disease[J]. Journal of Neuropathology & Experimental Neurology, 2003, 62(12):1220-1227. [32].H?TTENRAUCH M, WALTER S, KAUFMANN M, et al. Limited effects of prolonged environmental enrich- ment on the pathology of 5XFAD mice[J]. Molecular Neurobiology, 2016(10):1-14. [33].COHEN L I, LOURBOPOULOS A, HABER E, et al. Moderate environmental enrichment mitigates tauopathy in a neurofibrillary tangle mouse model[J]. Journal of Neuropathology & Experimental Neurology, 2011, 70(7): 610-621. [34].LEEM Y H, LIM H J, SHIM S B, et al. Repression of tau hyperphosphorylation by chronic endurance exercise in aged transgenic mouse model of tauopathies[J]. Journal of Neuroscience Research, 2009, 87(11):2561-2570. |
| 备注/Memo: | 收稿日期: 2017?03?10. 宁波大学学报(理工版)网址: http://journallg.nbu.edu.cn/ 基金项目: 国家自然科学基金(81371224); 宁波大学王宽诚幸福基金. 第一作者: 佩云(1990-), 女, 山西忻州人, 在读硕士研究生, 主要研究方向: 神经生物学. E-mail: m18268534126@163.com *通信作者: 张俊芳(1978-), 女, 山西大同人, 教授, 主要研究方向: 神经生物学. E-mail: zhangjunfang@nbu.edu.cn 宁波大学学报(理工版)网址:http://journallg.nbu.edu.cn/ |