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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The expression of the glutamate re-uptake transporter excitatory amino acid transporter 1 (EAAT1) in the normal human CNS and in motor neurone disease: an immunohistochemical study.
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The expression of the glutamate re-uptake transporter excitatory amino acid transporter 1 (EAAT1) in the normal human CNS and in motor neurone disease: an immunohistochemical study.

机译:谷氨酸再摄取转运蛋白兴奋性氨基酸转运蛋白1(EAAT1)在正常人CNS和运动神经元疾病中的表达:一项免疫组织化学研究。

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摘要

A monoclonal antibody to excitatory amino acid transporter 1 (EAAT1) has been generated which robustly stains paraffin-embedded, formaldehyde-fixed as well as snap-frozen human post-mortem brain tissue. We have used this antibody to map the distribution of EAAT1 throughout normal human CNS tissue. In addition this antibody has been used to perform a semi-quantitative immunohistochemical analysis of the expression of EAAT1 in motor cortex and cervical cord tissue taken from motor neurone disease cases (n=17) and neurologically normal controls (n=12). By comparing the relative optical density measurements of identical regions of motor cortex and cervical spinal cord an increase in the expression levels of EAAT1 was observed in motor neurone disease tissue compared to the control tissue and in both motor cortex and cervical spinal cord (9-17% and 13-33% increases respectively). EAAT1 was observed to be the most abundant transporter in more "caudal" brain regions such as the diencephalon and brainstem and its expression in other regions was frequently more uniform than that of EAAT2. In the motor cortex, EAAT1 immunoreactivity was present in all grey matter laminae, with some staining of individual astrocytes in the white matter. In spinal cord, EAAT1 immunoreactivity was strongest in the substantia gelatinosa. In the ventral horn, motor neurones were surrounded with a dense rim of perisomatic EAAT1 immunoreactivity, and the neuropil showed diffuse staining. Additional studies using double-labelling immunocytochemistry demonstrated that astrocytic co-localisation of EAAT1 and EAAT2 may occasionally be seen, but was not widespread in the human CNS and that in general astrocytes were positive for either EAAT1 or EAAT2.These results demonstrate that the EAAT1 has a widespread abundance throughout all regions of the human CNS examined and that there exist discrete populations of astrocytes that are positive solely for either EAAT1 or EAAT2. Furthermore, there is evidence to suggest that altered EAAT1 expression in motor neurone disease follows a different pattern to the reported changes of EAAT2 expression in this condition, indicating that the role of glutamate transporters in the pathogenesis of motor neurone disease appears more complex than previously appreciated.
机译:已开发出一种针对兴奋性氨基酸转运蛋白1(EAAT1)的单克隆抗体,该抗体可牢固地染色石蜡包埋,甲醛固定以及速冻的人体死后脑组织。我们已使用该抗体来绘制EAAT1在整个正常人CNS组织中的分布图。另外,该抗体已用于从运动神经元疾病病例(n = 17)和神经系统正常对照(n = 12)获得的运动皮层和宫颈组织中EAAT1的表达进行半定量免疫组织化学分析。通过比较运动皮质和宫颈脊髓相同区域的相对光密度测量结果,与对照组织以及运动皮质和颈脊髓相比,在运动神经元疾病组织中观察到了EAAT1表达水平的增加(9-17 %和13-33%分别增加)。观察到EAAT1是更“尾部”的大脑区域(如间脑和脑干)中最丰富的转运蛋白,其在其他区域的表达通常比EAAT2更均匀。在运动皮层中,所有灰质层中都存在EAAT1免疫反应性,白质中单个星形胶质细胞也有染色。在脊髓中,EAAT1免疫反应在明胶质中最强。在腹角中,运动神经元周围有紧密包围的EAAT1免疫反应性边缘,并且神经纤维呈弥漫性染色。使用双标记免疫细胞化学的其他研究表明,EAAT1和EAAT2可能偶尔出现星形细胞共定位,但在人CNS中并不普遍,并且一般来说,星形胶质细胞对EAAT1或EAAT2呈阳性。这些结果表明EAAT1具有在所检查的人类中枢神经系统的所有区域中分布广泛,并且存在离散的星形胶质细胞群,它们仅对EAAT1或EAAT2呈阳性。此外,有证据表明,在这种情况下,运动神经元疾病中改变的EAAT1表达遵循与报道的EAAT2表达变化不同的模式,这表明谷氨酸转运蛋白在运动神经元疾病发病机理中的作用似乎比以前认为的更为复杂。 。

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