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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Differential expression patterns of chloride transporters, Na+-K+-2Cl--cotransporter and K+-Cl--cotransporter, in epilepsy-associated malformations of cortical development.
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Differential expression patterns of chloride transporters, Na+-K+-2Cl--cotransporter and K+-Cl--cotransporter, in epilepsy-associated malformations of cortical development.

机译:在癫痫相关的皮质发育畸形中,氯化物转运蛋白Na + -K + -2Cl-共转运蛋白和K + -Cl-共转运蛋白的差异表达模式。

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摘要

Malformations of cortical development are recognized causes of chronic medically intractable epilepsy. An increasing number of observations suggests an important role for cation-chloride co-transporters (CCTs) in controlling neuronal function. Deregulation of their expression may contribute to the mechanisms of hyperexcitability that lead to seizures. In the present study the expression and cell-specific distribution of Na+-K+-2Cl--cotransporter (NKCC1) and K+-Cl--cotransporter (KCC2) were studied immunocytochemically in different developmental lesions, including focal cortical dysplasia (FCD) type IIB (n=9), hemimegalencephaly (HMEG, n=6) and ganglioglioma (GG, n=9) from patients with medically intractable epilepsy and in age-matched controls. In normal control adult cortex, NKCC1 displayed low neuronal and glial expression levels. In contrast KCC2 showed strong and diffuse neuropil staining. Notable glial immunoreactivity (IR) was not found for KCC2. NKCC1 was highly expressed in the majority of FCD,HMEG and GG specimens. NKCC1 IR was observed in neurons of different size, including large dysplastic neurons, in balloon cells (in FCD and HMEG cases) and in glial cells with astrocytic morphology. The immunoreactivity pattern of KCC2 in FCD, HMEG and GG specimens was characterized by less neuropil staining and more intrasomatic IR compared with control. KCC2 IR was observed in neurons of different size, including large dysplastic neurons, but not in balloon cells or in glial cells with astrocytic morphology. Double-labeling experiments confirmed the differential cellular distribution of the two CCTs and their expression in GABA(A) receptor (alpha1 subunit)-positive dysplastic neurons. The cellular distribution of CCTs, with high expression of NKCC1 in dysplastic neurons and altered subcellular distribution of KCC2 resembles that of immature cortex and suggests a possible contribution of CCTs to the high epileptogenicity of malformations of cortical development.
机译:皮质发育畸形是公认的慢性医学上难治的癫痫病的原因。越来越多的观察结果表明,阳离子氯化物共转运蛋白(CCT)在控制神经元功能中起着重要作用。它们表达的失调可能有助于导致癫痫发作的过度兴奋机制。在本研究中,我们通过免疫细胞化学方法研究了不同发育性病变(包括局灶性皮质发育异常(FCD)IIB型)中Na + -K + -2Cl-共转运蛋白(NKCC1)和K + -Cl-共转运蛋白(KCC2)的表达和细胞特异性分布。 (n = 9),患有医学顽固性癫痫的患者和年龄匹配的对照组中的半巨脑症(HMEG,n = 6)和神经节胶质瘤(GG,n = 9)。在正常对照的成人皮层中,NKCC1显示出较低的神经元和神经胶质表达水平。相反,KCC2显示强而弥散的Neuropil染色。未发现KCC2有明显的神经胶质免疫反应性(IR)。 NKCC1在大多数FCD,HMEG和GG标本中高表达。 NKCC1 IR在大小不同的神经元中观察到,包括大的发育异常的神经元,在气球细胞中(在FCD和HMEG中)和具有星形细胞形态的神经胶质细胞中。与对照相比,FCC,HMEG和GG标本中KCC2的免疫反应性特征是神经纤维染色少,体内IR更高。在不同大小的神经元中观察到了KCC2 IR,包括大的发育异常的神经元,但在气球细胞或星形胶质细胞形态的神经胶质细胞中未观察到。双重标记实验证实了这两种CCT的细胞分布差异及其在GABA(A)受体(α1亚基)阳性的发育异常的神经元中的表达。 CCTs的细胞分布,在发育异常的神经元中高表达NKCC1,而KCC2的亚细胞分布改变,与未成熟皮质相似,提示CCTs对皮质发育畸形的高致痫性可能做出了贡献。

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