首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >GENOMIC APPROACH TO SELECTIVE VULNERABILITY OF THE HIPPOCAMPUS IN BRAIN ISCHEMIA-HYPOXIA
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GENOMIC APPROACH TO SELECTIVE VULNERABILITY OF THE HIPPOCAMPUS IN BRAIN ISCHEMIA-HYPOXIA

机译:大脑缺血缺氧性海马选择性易损性的基因组学方法

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摘要

Transient global ischemia selectively damages neurons in specific brain areas. A reproducible pattern of selective vulnerability is observed in the dorsal hippocampus of rodents where ischemic damage typically affects neurons in the CA1 area while sparing neurons in CA3 and granule cells. The "neuronal factors" underlying the differential vulnerability of CA1 versus CA3 have been of great interest. This review first provides on overview of the histological pattern of ischemic-hypoxic damage, the phenomenon of delayed neuronal death, the necrosis-apoptosis discussion, and multiple molecular mechanisms studied in the hippocampus. Subsequently, genomic studies of basal gene expression in CA1 and CA3 are summarized and changes in gene expression in response to global brain ischemia are surveyed. A formal analysis is presented for the overlap between genes expressed under basal conditions in the hippocampus and genes responding to ischemia-hypoxia in general. A possible role of the elusive vascular factors in selective vulnerability is reviewed, and a gene set for angiogenesis is then shown to be enriched in the CA3 gene set. A survey of selective vulnerability in the human hippocampus in relation to genomic studies in ischemia-hypoxia is presented, and neurodegeneration genes with high expression in CA1 are highlighted (e.g. WFS1). It is concluded that neuronal factors dominate the selective vulnerability of CA1 but that vascular factors also deserve more systematic studies.
机译:短暂性全局缺血选择性损伤特定大脑区域的神经元。在啮齿类动物的海马背侧可观察到可复制的选择性脆弱性,其中缺血性损伤通常影响CA1区域的神经元,而保留CA3和颗粒细胞中的神经元。 CA1与CA3的差异脆弱性背后的“神经元因素”引起了人们的极大兴趣。这篇综述首先概述了缺血缺氧性损伤的组织学模式,迟发性神经元死亡的现象,坏死-凋亡的讨论以及在海马中研究的多种分子机制。随后,总结了CA1和CA3中基础基因表达的基因组研究,并调查了响应于全脑缺血的基因表达变化。对海马在基础条件下表达的基因与一般对缺血缺氧的反应基因之间的重叠进行了形式分析。综述了难以捉摸的血管因子在选择性脆弱性中的可能作用,然后显示了用于血管生成的基因集富含CA3基因集。提出了关于与缺血缺氧的基因组研究有关的人海马选择性脆弱性的调查,并突出了在CA1中高表达的神经退行性基因(例如WFS1)。结论是神经元因素主导着CA1的选择性脆弱性,但血管因素也值得进行更系统的研究。

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