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急性和慢性糖皮质激素处理调节体内多个脑区富含星形胶质细胞的 mRNA。

Acute and chronic glucocorticoid treatments regulate astrocyte-enriched mRNAs in multiple brain regions in vivo.

机构信息

Neuroscience Graduate Program, University of Michigan Ann Arbor, MI, USA ; Molecular and Behavioral Neuroscience Institute, University of Michigan Ann Arbor, MI, USA.

出版信息

Front Neurosci. 2013 Aug 7;7:139. doi: 10.3389/fnins.2013.00139. eCollection 2013.

Abstract

Previous studies have primarily interpreted gene expression regulation by glucocorticoids in the brain in terms of impact on neurons; however, less is known about the corresponding impact of glucocorticoids on glia and specifically astrocytes in vivo. Recent microarray experiments have identified glucocorticoid-sensitive mRNAs in primary astrocyte cell culture, including a number of mRNAs that have reported astrocyte-enriched expression patterns relative to other brain cell types. Here, we have tested whether elevations of glucocorticoids regulate a subset of these mRNAs in vivo following acute and chronic corticosterone exposure in adult mice. Acute corticosterone exposure was achieved by a single injection of 10 mg/kg corticosterone, and tissue samples were harvested 2 h post-injection. Chronic corticosterone exposure was achieved by administering 10 mg/mL corticosterone via drinking water for 2 weeks. Gene expression was then assessed in two brain regions associated with glucocorticoid action (prefrontal cortex and hippocampus) by qPCR and by in situ hybridization. The majority of measured mRNAs regulated by glucocorticoids in astrocytes in vitro were similarly regulated by acute and/or chronic glucocorticoid exposure in vivo. In addition, the expression levels for mRNAs regulated in at least one corticosterone exposure condition (acute/chronic) demonstrated moderate positive correlation between the two conditions by brain region. In situ hybridization analyses suggest that select mRNAs are regulated by chronic corticosterone exposure specifically in astroctyes based on (1) similar general expression patterns between corticosterone-treated and vehicle-treated animals and (2) similar expression patterns to the pan-astrocyte marker Aldh1l1. Our findings demonstrate that glucocorticoids regulate astrocyte-enriched mRNAs in vivo and suggest that glucocorticoids regulate gene expression in the brain in a cell type-dependent fashion.

摘要

先前的研究主要从神经元的角度来解释糖皮质激素对大脑中基因表达的调控;然而,对于糖皮质激素对胶质细胞,特别是星形胶质细胞的相应影响知之甚少。最近的基因芯片实验已经在原代星形胶质细胞培养物中鉴定出了糖皮质激素敏感的 mRNA,其中包括许多相对于其他脑细胞类型具有星形胶质细胞特异性表达模式的 mRNA。在这里,我们检测了在成年小鼠急性和慢性皮质酮暴露后,这些 mRNA 中的一部分是否在体内受到糖皮质激素的调节。急性皮质酮暴露通过单次注射 10mg/kg 皮质酮来实现,组织样本在注射后 2 小时采集。慢性皮质酮暴露通过在饮用水中添加 10mg/ml 皮质酮来实现,持续 2 周。然后通过 qPCR 和原位杂交技术在与糖皮质激素作用相关的两个脑区(前额叶皮层和海马体)评估基因表达。体外糖皮质激素调节星形胶质细胞中大多数测量的 mRNA 也同样受到体内急性和/或慢性糖皮质激素暴露的调节。此外,至少在一种皮质酮暴露条件(急性/慢性)下受到调节的 mRNA 的表达水平,通过脑区表现出两种条件之间的中度正相关。原位杂交分析表明,根据(1)皮质酮处理和载体处理动物之间相似的一般表达模式和(2)与星形胶质细胞标记物 Aldh1l1 相似的表达模式,选择的 mRNA 受慢性皮质酮暴露的特异性调节。我们的研究结果表明,糖皮质激素在体内调节星形胶质细胞特异性丰富的 mRNA,并表明糖皮质激素以细胞类型依赖的方式调节大脑中的基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3e2/3736049/e1c383f01fef/fnins-07-00139-g0001.jpg

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