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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Temporal dysreguiation of cortical gene expression in the isolation reared Wistar rat
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Temporal dysreguiation of cortical gene expression in the isolation reared Wistar rat

机译:分离饲养的Wistar大鼠皮质基因表达的时间异常

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摘要

The critical sequence of molecular, neurotransmission and synaptlc disruptions that underpin the emergence of psychiatric disorders like schizophrenia remain to be established with progress only likely using animal models that capture key features of such disorders. We have related the emergence of behavioural, neurochemical and synapse ultrastructure deficits to transcriptional dysreguiation in the medial prefrontal cortex of Wistar rats reared in isolation. Isolation reared animals developed sensorimotor deficits at postnatal day 60 which persisted into adulthood. Analysis of gene expression prior to the emergence of the sensorimotor deficits revealed a significant disruption in transcriptional control, notably of immediate early and interferon-associated genes. At postnatal day 60 many gene transcripts relating particularly to GABA transmission and synapse structure, for example Gabra4, Nsf, Syn2 and DIgh1, transiently increased expression. A subsequent decrease in genes such as Gria2 and Dlgh2 at postnatal day 80 suggested deficits in glutamatergic transmission and synapse integrity, respectively. Microdialysis studies revealed decreased extracellular glutamate suggesting a state of hypofrontality while ultrastructural analysis showed total and perforated synapse complement in layer III to be significantly reduced in the prefrontal cortex of postnatal day 80 isolated animals. These studies provide a molecular framework to understand the developmental emergence of the structural and behavioural characteristics that may in part define psychiatric illness.
机译:诸如精神分裂症等精神疾病出现的分子,神经传递和突触破坏的关键序列仍有待建立,只有使用捕获此类疾病关键特征的动物模型才能取得进展。我们已经将行为,神经化学和突触超微结构缺陷的出现与孤立饲养的Wistar大鼠内侧前额叶皮层的转录失调相关。隔离饲养的动物在出生后第60天出现感觉运动缺陷,并持续到成年。在感觉运动缺陷出现之前对基因表达的分析显示,转录控制受到了显着破坏,特别是立即早期的干扰素相关基因。在出生后60天,许多与GABA传递和突触结构特别相关的基因转录本,例如Gabra4,Nsf,Syn2和DIgh1,会瞬时增加表达。出生后第80天,例如Gria2和Dlgh2等基因的随后下降分别提示谷氨酸能传递和突触完整性缺乏。微透析研究表明,细胞外谷氨酸减少,表明处于低额性状态,而超微结构分析显示,在出生后80天分离的动物的额叶前皮质中,第三层的总和穿孔突触补体明显减少。这些研究提供了一个分子框架,以了解结构和行为特征的发展出现,这可能部分地定义了精神疾病。

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