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Overview of animal model study of Alzheimer′s disease and analysis of non-experimental causes of death |
ZHANG Huiye1 CHONG Wenqiang1 LI Ang1 WANG Mengjing1 ZHAO Xian1 XING Wenwen2 LIU Qi1 |
1.Academy of Acupuncture, Shaanxi University of Chinese Medicine, Shaanxi Province, Xi′an 712046, China;
2.College of Basic Medical, Shaanxi University of Chinese Medicine, Shaanxi Province, Xi′an 712046, China |
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Abstract This paper briefly introduces the animal model of Alzheimer′s disease (AD) and analyzes the non-experimental death factors in animal experiments. By consulting, sorting out and summarizing a large number of literatures, this paper gives a overview of the common animal models for AD, while investigates the correlation between environmental factors, motor factors and non-experimental causes of death in AD animal models. The animal feeding density and regular exercise in environmental factors affect the survival rate and experimental results of AD model animals. Establish an ideal AD animal model, in order to provide a reference for the scientific selection of AD animal models in experimental research. In addition, the control of animal population density feeding and regular exercise are adopted to evaluate the safety of high-model animals to better ensure the objectivity of the experimental results.
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[1] Ballard C,Gauthier S,Corbett A,et al. Alzheimer′s disease [J]. Lancet,2011,377(9770):1019-1031.
[2] Scheltens P,Blennow K,Breteler MM,et al. Alzheimer′s disease [J]. Lancet,2016,388(10043):505-517.
[3] Schutt T,Helboe L,Ostergaard Pedersen L,et al. Dogs with Cognitive Dysfunction as a Spontaneous Model for Early Alzheimer′s Disease:A Translational Study of Neuropathological and lnflammatory Markers [J]. J Alzheimers Dis,2016,52(2):433-449.
[4] Yang Y,Cheng XR,Zhang GR,et al. Autocrine motility factor receptor is involved in the process of learning and memory in the central nervous system [J]. Behav Brain Res,2012,229(2):412-418.
[5] Xiao F,Li XG,Zhang XY,et al. Combined administration of D-galactose and aluminium induces Alzheimer-like lesions inbrain [J]. Neurosci Bull,2011,27(3):143-155.
[6] Rofina JE,van Ederen AM,Toussaint MJ,et al. Cognitive disturbances in old dogs suffering from the canine counterpart of Alzheimer′s disease [J]. Brain Res,2006,1069(1):216-226.
[7] Gunn-Moore DA,Mc Vee J,Bradshaw JM,et al. Ageing changes in cat brains demonstrated by beta-amyloid and AT8-immunoreactive phosphorylated tau deposits [J]. J Feline Med Surg,2006,8(4):234-242.
[8] Roertgen KE,Parisi JE,Clark HB,et al. A beta-associated cerebral angiopathy and senile plaques with neurofibrillary tangles and cerebral hemorrhage in an aged wolverine(Gulo gulo)[J]. Neurobiol Aging,1996,17(2):243-247.
[9] Sherman KA,Friedman E. Pre-and post-synaptic cholinergic dysfunction in aged rodent brain regions:new findings and an interpretative review [J]. Int J Dev Neurosci,1990,8(6):689-708.
[10] 张雪竹,彭应梅,刘存志,等.骨质疏松小鼠SAMP6主动脉病变特点的实验研究[J].中国老年学杂志,2008, 28(8):1588-1590.
[11] 褚芹,于建春,潘建明,等.快速老化模型小鼠SAMP8行为学的增龄性变化[J].现代生物医学进展,2008,10(8):1801-1804.
[12] Cotman CW,Head E. The canine(dog)model of human aging and disease:dietary,environmental and immunotherapy approaches [J]. J Alzheimers Dis,2008,15(4):685-707.
[13] Takahashi R. Anti-aging studies on the senescence acceleratedmouse(SAM)strains [J]. Yakugahu Zosshi,2010, 130(1):11-18.
[14] Garcfa-Matas S,Gutierrez-Cuesta J,Coto-Montes A. Dysfunc-tionof astrocytes in senescence-accelerated mice SAMP8 reduces their neuroprotective capacity [J]. Aging Cell,2008,7(5):630-640.
[15] 周伟勤,毕明刚,杜冠华.快速老化小鼠SAMP8研究进展[J].中国药理学通报,2009,25(5):565-568.
[16] Tresguerres JA,Kireev R,Forman K,et al. Effect of chronicmelatonin administration on several physiological parametersform old Wistar rats and SAMP8 mice [J]. Curr Aging Sci,2012,5(3):242-253.
[17] Hong XP,Chen T,Yin NN,et al. Puerarin Ameliorates D-Galactose Induced Enhanced Hippocampal Neurogenesis and Tau Hyperphosphorylation in Rat Brain [J]. J Alzheimers Dis,2016,51(2):605-617.
[18] Rosen DR,Martin-Morris L,Luo LQ,et al. A Drosophila gene encoding a protein resembling the human beta-amyloid protein precursor [J]. Proc Natl Acad Sci USA,1989,86(7):2478-2482.
[19] Wu Y,Wu Z,Butko P,et al. Amyloid-beta-induced pathological behaviors are suppressed by Ginkgo biloba extract EGb 761 and ginkgolides in transgenic Caenorhabditis elegans [J]. J Neurosci,2006,26(50):13102-13113.
[20] Kraemer BC,Zhang B,Leverenz JB,et al. Neurodegeneration and defective neurotransmission in a Caenorhabditis elegans model of tauopathy [J]. Proc Natl Acad Sci USA,2003,100(17):9980-9985.
[21] Amsterdam A,Hopkins N. Mutagenesis strategies in zebrafish for identifying genes involved in development and disease [J]. Trends Genet,2006,22(9):473-478.
[22] Zou H,Zhou L,Li Y,et al. Benzo[e]isoindole-1,3-diones as potential inhibitors of glycogen synthase kinase-3(GSK-3). Synthesis,kinase inhibitory activity,zebrafish phenotype,and modeling of binding mode [J]. J Med Chem,2010,53(3):994-1003.
[23] Hsiao K,Chapman P,Nilsen S,et al. Correlative memory deficits,Abeta elevation,and amyloid plaques in transgenic mice [J]. Sci,1996,274(5284):99-102.
[24] Van Dam D,Coen K,De Deyn PP. Ibuprofen modifies cognitive disease progression in an Alzheimer′s mouse model [J]. J Psychopharmacolgy,2010,24(3):383-388.
[25] G?觟tz J,Schild A,Hoerndli F,et al. Amyloid-induced neurofibrillary tangle formation in Alzheimer′s disease:insight from transgenic mouse and tissue-culture models [J]. Int J Dev Neurosci,2004,22(7):453-465.
[26] Brendel M,Probst F,Jaworska A,et al. Glial activation and glucose metabolism in a transgenic amyloid mouse model:A triple-tracer PET study [J]. J Nucl Med,2016,57(6):954-960.
[27] Chapman JG,Christian JJ,Pawlikowski MA,et al. Analysis of steroid homone levels in female mice at high population density [J]. Physiology and Behavior,1998,64(4):529-533.
[28] 王丽,焦劲松,刘尊敬,等.APP/PS-1/tau三转基因阿尔茨海默病模型小鼠早期认知功能研究[J].中国现代神经疾病杂志,2015,15(5):406-410.
[29] 俞冰倩,张雪梅.阿尔茨海默病模型建立及应用的研究[J].脑与神经疾病杂志,2016,24(12):781-785.
[30] 刘荣强,陈云慧,张天娥,等.阿尔茨海默病动物模型的研究进展[J].西部医学,2019,31(2):326-329.
[31] 王莹,刘玉刚,张丹参.阿尔茨海默病实验动物模型方法及评价[J].神经药理学报,2014,4(2):27-38.
[32] Reeb-Whitaker CK,Paigen B,Beamer WG,et al. The impact of reduced frequency of cage changes on the health of mice housed in ventilated cages [J]. Lab Anim,2001,35(1):58-73.
[33] Chitty D. The natural selection of self-regulatory behaviour in animal populations [J]. Proc Ecol Soc Aust,1967,2:545-555.
[34] Nie HY,Liu JK,Su JP,et al. Analysis on aggressive levels and behavior polymorphism of root voles in seasonal flutuating populations under the interaction between predation and food availability [J]. Acta Ecologica Sinica,2006,26(7):2139-2147.
[35] Nie HY,Liu JK. Regulation of root vole population dynamics by food supply and predation:a two-factor experiment [J]. Oikos,2005,109(2):387-395.
[36] Dong JP,Li GH,Zhang ZB. Density-dependent genetic variation in dynamic population of the greater long-tailed hamster(Tscherskia trition)[J]. J Mammal,2010,91(1):200-207.
[37] Rodel HG,Bora A,Kaiser J,et al. Density- dependent reproduction in the European rabbit:a consequence of individual reponse and age-dependent reproductive performance [J]. Oikos,2004,104(3):529-539.
[38] Frith CH,Ward JM,Chandra M. The Morphology,Immunohisto-chemistry,and Incidence of Hematopoietic Neoplasms in Mice and Rats [J]. Toxicol Pathol,1993,21(2):206-218.
[39] Hoenerhoff MJ,Starost MF,Ward JM. Eosinophilic Crystalline Pneumonia As A Major Cause of Death in 129S4/SvJae Mice [J]. Vet Pathol,2006,43(5):682-688.
[40] Maeda H,Glerser CA,Masoro EJ,et al. Nutritional Influences on Aging of Fischer 344 Rats:Ⅱ. Pathology [J]. J Gemntol,1985,40(6):671-688.
[41] Anastasia JV,Braun BL,Smith KT. General and Histopathological Results of A Two-Year Study of Rats Fed Semi-Purified diets Containing Casein and Sova Protein [J]. Food Chem Toxicol,1990,28(3):147-156.
[42] Bmnson RT,Lipman RD. Reduction in Rate of Occurrence of Age Related Lesions in Dietary Restricted Lahoratory Mice [J]. Growth Dev Aging,1991,55(3):169-184.
[43] Dontas IA,Tsolakis AI,Khaldi L,et al. Malocclusion in Aging Wistar Rats [J]. J Am Assoc Lab Anim Sci,2010, 49(1):22-26.
[44] Spangles EL,Ingram DK. Utilization of the Rat as A Model of Mammalian Aging:Impact of Pathology on Behavior [J]. Gerontology,1996,42(6):301-311.
[45] Nelson ME,Rejeski WJ,Blair SN,et al. Physical activity and public health in older adults:Recommendation from the American College of Sports Medicine and the American Heart Association [J]. Med Sci Sports Exerc,2007, 39(8):1435-1445.
[46] Seidler RD,Bernard JA,Burutolu TB,et al. Motor control and aging:Links to age-related brain structural,functional,and biochemical effects [J]. Neurosci Biobehav Rev,2010,34(5):721-733.
[47] Erickson KI,Kramer AF. Aerobic exercise effects on cognitive and neural plasticity in older adults [J]. Br J Sports Med,2009,43(1):22-24.
[48] Radak Z,Chung HY,Goto S. Systemic adaptation to oxidative challenge induced by regular exercise [J]. Free Radic Biol Med,2008,44(2):153-159.
[49] Leandro C,Souza,Carlos B. Neuroprotective effect of physical exercise in a mouse model of Alzheimer′s disease induced by β-amyloid1-40 peptide [J]. Neurotox Res,2013,24(2):148-163.
[50] Lee Goldman.西氏内科学(第22版)[M].西安:世界图书出版西安公司,2009:1278-1301.
[51] 王显生.游泳运动对阿尔茨海默病性神经及运动机能恢复的实验研究[J].山东医药,2011,51(40):72-73.
[52] 徐琼,赵津磊,王兴.有氧运动对阿尔茨海默病患者认知功能干预效果的meta分析[J].中国康复医学杂志,2019,34(7):824-830. |
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