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首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Retarded kindling progression in mice deficient in the extracellular matrix glycoprotein tenascin-R.
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Retarded kindling progression in mice deficient in the extracellular matrix glycoprotein tenascin-R.

机译:缺乏细胞外基质糖蛋白腱生蛋白-R的小鼠的延迟点燃过程。

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PURPOSE: We investigated the role of the extracellular matrix glycoprotein tenascin-R (TNR) in formation of a hyperexcitable network in the kindling model of epilepsy. The idea that TNR may be important for this process was suggested by previous studies showing that deficiency in TNR leads to abnormalities in synaptic plasticity, perisomatic GABAergic inhibition and more astrocytes in the hippocampus of adult mice. METHODS: Constitutively TNR deficient (TNR-/-) mice and their wild-type littermates received repeated electrical stimulation in the amygdala over several days until they developed fully kindled generalized seizures at which time their brains were studied immunohistochemically. RESULTS: In TNR-/- mice, kindling progression was retarded compared with wild-type littermate controls. Morphological analysis of the mice used for the kindling studies revealed that, independently of genotype, numbers of parvalbumin-positive interneurons in the dentate gyrus correlated positively with afterdischarge threshold alterations in kindled mice. The kindling-induced increase in the number of S100 expressing astrocytes in the dentate gyrus was enhanced by TNR deficiency and correlated negatively with the kindling rate. DISCUSSION: Our data support the view that TNR promotes formation of a hyperexcitable network during kindling and suggest that an increase in S100-expressing astrocytes may contribute to retarded epileptogenesis in TNR-/- mice.
机译:目的:我们研究了癫痫点燃模型中细胞外基质糖蛋白腱糖蛋白-R(TNR)在高兴奋性网络形成中的作用。先前的研究表明,TNR可能对这一过程很重要,这一想法表明,TNR的缺乏会导致成年小鼠海马突触可塑性,过溶性GABA能抑制和更多星形胶质细胞异常。方法:组成性TNR缺陷(TNR-/-)小鼠及其野生型同窝小鼠在杏仁核中连续数天受到重复电刺激,直到它们发展为完全点燃的全身性癫痫发作,然后对其大脑进行免疫组织化学研究。结果:与野生型同窝对照相比,TNR-/-小鼠的点燃进程有所延迟。对用于点燃研究的小鼠的形态学分析表明,与基因型无关,齿状回中小白蛋白阳性中间神经元的数量与点燃小鼠的放电后阈值改变呈正​​相关。点燃引起的齿状回中表达S100的星形胶质细胞数量的增加由于TNR缺乏而增强,并且与点燃率呈负相关。讨论:我们的数据支持以下观点:TNR在点燃过程中促进了超兴奋网络的形成,并表明表达S100的星形胶质细胞的增加可能有助于TNR-/-小鼠的癫痫发生延迟。

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