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颞叶癫痫患者海马区红藻氨酸受体mRNA水平的改变

Altered hippocampal kainate-receptor mRNA levels in temporal lobe epilepsy patients.

作者信息

Mathern G W, Pretorius J K, Kornblum H I, Mendoza D, Lozada A, Leite J P, Chimelli L, Born D E, Fried I, Sakamoto A C, Assirati J A, Peacock W J, Ojemann G A, Adelson P D

机构信息

Division of Neurosurgery, University of California, Los Angeles 90095, USA.

出版信息

Neurobiol Dis. 1998 Sep;5(3):151-76. doi: 10.1006/nbdi.1998.0200.

Abstract

This study determined whether hippocampal kainate (KA) receptor mRNA levels were increased or decreased in temporal lobe epilepsy patients compared with nonseizure autopsies. Hippocampal sclerosis (HS; n = 17), nonsclerosis (non-HS; n = 11), and autopsy hippocampi (n = 9) were studied for KA1-2 and GluR5-7 mRNA levels using semiquantitative in situ hybridization techniques, along with neuron densities. Compared with autopsy hippocampi, HS and non-HS cases showed decreased GluR5 and GluR6 hybridization densities per CA2 and/or CA3 pyramid. Furthermore, HS patients demonstrated increased KA2 and GluR5 hybridization densities per granule cell compared with autopsy hippocampi. These findings indicate that chronic temporal lobe seizures were associated with differential changes in hippocampal KA1-2 and GluR5-7 hybridization densities that vary by subfield and pathology group. In temporal lobe epilepsy patients, these results support the hypothesis that pyramidal cell GluR5 and GluR6 mRNA levels are decreased as a consequence of seizures, and in HS patients granule cell KA2 and GluR5 mRNA levels are increased in association with aberrant fascia dentata mossy fiber sprouting and/or hippocampal neuronal loss.

摘要

本研究旨在确定与非癫痫尸检相比,颞叶癫痫患者海马海人酸(KA)受体mRNA水平是升高还是降低。使用半定量原位杂交技术,对海马硬化(HS;n = 17)、非硬化(非HS;n = 11)和尸检海马(n = 9)的KA1-2和GluR5-7 mRNA水平以及神经元密度进行了研究。与尸检海马相比,HS和非HS病例的CA2和/或CA3锥体神经元每单位的GluR5和GluR6杂交密度降低。此外,与尸检海马相比,HS患者颗粒细胞每单位的KA2和GluR5杂交密度增加。这些发现表明,慢性颞叶癫痫发作与海马KA1-2和GluR5-7杂交密度的差异变化有关,这些变化因亚区和病理组而异。在颞叶癫痫患者中,这些结果支持以下假设:癫痫发作导致锥体细胞GluR5和GluR6 mRNA水平降低,而在HS患者中,颗粒细胞KA2和GluR5 mRNA水平升高与齿状回苔藓纤维异常发芽和/或海马神经元丢失有关。

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