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Adult and neonatal astrocytes exhibit diverse gene expression profiles in response to beta amyloid <i>ex vivo</i>
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作者 Antti Kurronen Rea Pihlaja +5 位作者 Eveliina Pollari Katja Kanninen Markus Storvik Garry Wong milla koistinaho Jari koistinaho 《World Journal of Neuroscience》 2012年第2期57-67,共11页
Astrocytes are implicated in the neuropathology of Alzheimer’s disease (AD) by clustering with other activated inflammatory cells at the sites of amyloid beta (Aβ) deposits formed in the cortex and hippocampus. Astr... Astrocytes are implicated in the neuropathology of Alzheimer’s disease (AD) by clustering with other activated inflammatory cells at the sites of amyloid beta (Aβ) deposits formed in the cortex and hippocampus. Astrocytes are known to contribute to the clearance of Aβ in the AD brain. Also, adult but not neonatal mouse astrocytes are able to clear Aβ deposits from the tissue sections of transgenic AD mice and human brain ex vivo. Because these findings suggest that cultured neonatal astrocytes may not represent a relevant cell for modeling the function of astrocytes in neurodegenerative diseases, we studied whether neonatal and adult astrocytes show different responses in gene expression when exposed to brain sections burdened by deposits of human Aβ. Whole genome microbarrays demonstrated greater alteration of gene expression in adult astrocytes than in neonatal astrocytes. When exposed to Aβ burdened brain sections adult but not neonatal astrocytes up-regulated genes related to peptidase (such as MMP13, MMP12, Phex, Htra1), scavenger receptor (Scara5, Enpp2) and glutathioine transferase (Gsta1, Gsta2, Gclm) activity, suggesting increased ability to degrade and endocytose Aβ peptides and protect against oxidative bursts. Quantitative RT-PCR analysis confirmed the significant alteration in gene expression of key peptidases, scavenger receptors and cholesterol synthesis. Our data suggest that adult astrocytes in culture are more sensitive to disease-relevant stress showing more extensive genetic response compared to neonatal astrocytes. In addition, the identified peptidases and scavenger receptors which increase expression selectively in adult astrocytes suggest their major role in astrocyte-mediated clearance of Aβ deposits in AD. 展开更多
关键词 Alzheimer’s Disease ASTROCYTES Mice Amyloid Beta Gene Expression Microarray Analysis Endocytosis PROTEOLYSIS
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Alzheimer病与脑缺血的相互作用聚焦炎症 被引量:2
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作者 milla koistinaho Jari koistinaho +2 位作者 郑莹 袁宝玉 闫福岭 《国际脑血管病杂志》 2006年第11期803-811,共9页
进行性记忆障碍、与局部炎症相关的β-淀粉样蛋白(β-amyloid,Aβ)斑块、神经原纤维缠结和选择性脑区神经元脱失是Alzheimer病(Alzheimer’s disease,AD)的特征。虽然β-淀粉样前体蛋白(β-amyloid precursor protein,APP)和Aβ在AD的... 进行性记忆障碍、与局部炎症相关的β-淀粉样蛋白(β-amyloid,Aβ)斑块、神经原纤维缠结和选择性脑区神经元脱失是Alzheimer病(Alzheimer’s disease,AD)的特征。虽然β-淀粉样前体蛋白(β-amyloid precursor protein,APP)和Aβ在AD的病因学中起关键作用,但究竟何种形式的APP或Aβ与AD脑内的神经元易损性有关仍不清楚。最近已经公认,作为老年人痴呆的另一种病因,脑缺血促进了AD的发病,而认知功能严重减退的患者和潜在的AD患者发生脑缺血事件的风险增高。此外,载脂蛋白E(apolipoprotein E,ApoE)ε4等位基因既是AD的危险因素,也是脑缺血和脑出血后转归不良的危险因素。最近已经报道了AD模型中降低神经元死亡阈值的一些因素和分子机制,在这些神经炎症中似乎起着重要的作用。在中枢神经系统中,AD神经病理学和缺血性损伤的发展和成熟均以神经胶质细胞活化和炎症介质上调为特征。业已证实,抗炎症策略对体内AD样神经病理学和缺血性损伤的预防和治疗的确有益。本文对提示人APP在神经元的过度表达促使脑更易遭受缺血性损伤的一些研究结果进行了总结,并对增强神经元对缺血性卒中易感性的一些因素做了介绍。 展开更多
关键词 小胶质细胞 神经炎症 缺血 载脂蛋白E ALZHEIMER病 神经变性疾病
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