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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Differential regulation of chondroitin sulfate proteoglycan mRNAs in the denervated rat fascia dentata after unilateral entorhinal cortex lesion.
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Differential regulation of chondroitin sulfate proteoglycan mRNAs in the denervated rat fascia dentata after unilateral entorhinal cortex lesion.

机译:单侧内脏皮质损伤后失神经大鼠筋膜牙本质中硫酸软骨素蛋白聚糖mRNA的差异调节。

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摘要

Following brain trauma, chondroitin sulphate proteoglycans (CSPGs) are enriched at injury sites and in denervated areas. At injury sites, CSPGs are regarded as inhibitors of axonal regeneration because of their growth inhibitory properties. In areas of denervation their role is less clear, since they are enriched in zones of sprouting, i.e. zones of axonal growth. To identify CSPGs expressed in a denervated brain area and to quantify changes in their mRNA expression, neurocan, brevican, NG2, phosphacan and aggrecan mRNA were analyzed in the rat fascia dentata following entorhinal denervation. Laser microdissection was combined with quantitative RT-PCR to measure mRNA changes specifically within the denervated portion of the molecular layer (1h, 6h, 10h, 12h, 1d, 2d, 3d, 4d, 7d and 14d post-lesion). Changes in glial fibrillary protein mRNA were measured at the same time points and used as lesion control. This approach revealed a differential regulation of CSPG mRNAs in the denervated zone: neurocan, brevican and NG2 mRNA were upregulated with a maximum around 2 days post-lesion. In contrast, aggrecan mRNA levels reached a maximum 7 days post-lesion and phosphacan mRNA levels were not significantly altered. Taken together, our data reveal a temporal pattern in CSPG mRNA expression in the denervated fascia dentata. This suggests specific biological functions for CSPGs during the denervation-induced reorganization process: whereas the early increase in CSPGs in the denervated zone could influence the pattern of sprouting, the late increase of aggrecan mRNA suggests a different role during the late phase of reorganization.
机译:脑部受伤后,硫酸软骨素蛋白聚糖(CSPG)在损伤部位和失神经区域富集。在损伤部位,CSPG由于具有生长抑制特性,因此被视为轴突再生的抑制剂。在去神经区域中,它们的作用不太清楚,因为它们在发芽区域,即轴突生长区域中富集。为了鉴定在失神经的大脑区域表达的CSPG并量化其mRNA表达的变化,在神经内膜去神经后的大鼠筋膜中分析了神经cancan,brevican,NG2,phosphacan和aggrecan mRNA。激光显微切割技术与定量RT-PCR结合使用,以专门测量分子层失神经部分(病变后1h,6h,10h,12h,1d,2d,3d,4d,7d和14d)内的mRNA变化。在相同时间点测量胶质纤维蛋白mRNA的变化,并将其用作病灶对照。这种方法揭示了在神经支配区中CSPG mRNA的差异调节:在损伤后2天左右,神经罐,brevican和NG2 mRNA最高表达。相反,聚集蛋白聚糖mRNA水平在损伤后达到最大7天,并且磷酸酯mRNA水平没有显着改变。综上所述,我们的数据揭示了失神经筋膜齿状牙龈中CSPG mRNA表达的时间模式。这表明在去神经引起的重组过程中CSPG的特定生物学功能:尽管在去神经区域CSPG的早期增加可能会影响发芽模式,但聚集蛋白聚糖mRNA的后期增加表明在重组的后期具有不同的作用。

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