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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Kinetic profile of the transcriptome changes induced in the choroid plexus by peripheral inflammation.
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Kinetic profile of the transcriptome changes induced in the choroid plexus by peripheral inflammation.

机译:外周炎症在脉络丛中诱导的转录组变化的动力学特征。

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摘要

The choroid plexus, being part of the blood-brain barriers and responsible for the production of cerebrospinal fluid, is ideally positioned to transmit signals into and out of the brain. This study, using microarray analysis, shows that the mouse choroid plexus displays an acute-phase response after an inflammatory stimulus induced in the periphery by lipopolysaccharide (LPS). Remarkably, the response is specific to a restricted number of genes (out of a total of 24,000 genes analyzed, 252 are up-regulated and 173 are down-regulated) and transient, as it returns to basal conditions within 72 h. The up-regulated genes cluster into families implicated in immune-mediated cascades and in extracellular matrix remodeling, whereas those down-regulated participate in maintenance of the barrier function. Importantly, several acute-phase proteins, whose blood concentrations rise in response to inflammation, may contribute to the effects observed in vivo after LPS injection, as suggested by the differential response of primary choroid plexus epithelial cell cultures to LPS alone or to serum collected from animals exposed to LPS. By modulating the composition of the cerebrospinal fluid, which will ultimately influence the brain parenchyma, the choroid plexus response to inflammation may be of relevance in brain homeostasis in health and disease.
机译:脉络丛是血脑屏障的一部分,负责脑脊液的产生,在理想情况下可以将信号传入和传出大脑。使用微阵列分析的这项研究表明,小鼠脉络丛在脂多糖(LPS)引起的外周炎症刺激后显示出急性期反应。值得注意的是,响应是有限的基因(在分析的24,000个基因中,有252个被上调,而173个被下调)的基因特异,并在72小时内恢复到基础状态后即刻发生。上调的基因聚集到涉及免疫介导的级联反应和细胞外基质重塑的家族中,而下调的基因参与屏障功能的维持。重要的是,几种急性期蛋白(其血液浓度响应炎症反应而升高)可能有助于LPS注射后在体内观察到的作用,这主要由脉络膜丛上皮细胞原代培养物对单独LPS或对从暴露于LPS的动物。通过调节将最终影响脑​​实质的脑脊液成分,脉络丛对炎症的反应可能与健康和疾病的脑稳态有关。

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