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首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Focal neocortical epilepsy affects hippocampal volume, shape, and structural integrity: A longitudinal MRI and immunohistochemistry study in a rat model
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Focal neocortical epilepsy affects hippocampal volume, shape, and structural integrity: A longitudinal MRI and immunohistochemistry study in a rat model

机译:局灶性新皮层癫痫会影响海马体积,形状和结构完整性:在大鼠模型中的纵向MRI和免疫组织化学研究

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Purpose: Extratemporal epilepsy often coincides with cognitive decline, which may be associated with hippocampal dysfunction. Severe hippocampal sclerosis can be detected with conventional neuroimaging in some patients with chronic extrahippocampal epilepsy (so-called dual pathology). However, subtle structural hippocampal changes may already develop at a much earlier phase, and in a larger number of patients. Our goal was to longitudinally characterize the development of bilateral hippocampal pathology in an experimental neocortical focal epilepsy model. Methods: Focal unilateral neocortical epilepsy was induced by microinjection of tetanus toxin in the primary motor cortex in adult male Sprague-Dawley rats. Another group of age-matched rats served as controls. In both groups, structural magnetic resonance imaging (MRI) was performed at 1, 3, 7, and 10 weeks of follow-up. Bilateral hippocampi were outlined and macroscopically analyzed using a state-of-the-art point-based morphometry model. Hippocampal microstructural changes at the end of follow-up, 10 weeks after epilepsy induction, were assessed with postmortem standard cresyl-violet, Fluoro-Jade, proteolipid protein 1, vimentin, glial fibrillary acidic protein, and ionized calcium binding adaptor molecule 1 stainings. Key Findings: All rats in the injected group developed seizures. The ipsilateral hippocampal volume was on average 8.76 (mean) ± 3.32% (standard deviation) smaller in the epileptic animals as compared to controls (p = 0.01) during the 10 weeks of follow-up. The contralateral hippocampus showed a similar reduction of 8.49 (mean) ± 3.27% (standard deviation) in total volume (p = 0.02). Clear hippocampal shape differences were found between the two groups. The most affected areas after epilepsy induction were the bilateral dorso-mediorostral, dorsolateral, and ventrolateral areas of the hippocampi. Normal developmental shape changes of the hippocampus, as detected in control rats, were largely absent in the ipsilateral hippocampus of epileptic rats. Quantitative histologic analysis revealed significant neuronal loss in the hippocampus, most pronounced in the hilar subregion, globally impaired myelination, reactive astrocytosis, and activated microglia. We found a weak but significant correlation between the number of neurons and hippocampal volume (r = 0.25, p = 0.0025). Significance: We found evidence of hippocampal pathology in both hemispheres following experimental focal neocortical epilepsy. The observed development of bilateral hippocampal pathology, with onset in the early stages of focal neocortical epilepsy, may be a significant factor in comorbidities, such as cognitive dysfunction, found in patients with extratemporal localization-related epilepsy.
机译:目的:颞前癫痫常与认知能力下降同时发生,这可能与海马功能障碍有关。在一些慢性海马外癫痫(所谓的双重病理学)患者中,可以通过常规的神经影像学检查发现严重的海马硬化。但是,细微的海马结构变化可能已经在更早的阶段出现了,并且出现在更多的患者中。我们的目标是在实验性新皮层局灶性癫痫模型中纵向表征双侧海马病理的发展。方法:成年雄性Sprague-Dawley大鼠在原发性运动皮层内显微注射破伤风毒素可诱发局灶性单侧新皮层癫痫。另一组年龄匹配的大鼠作为对照。两组均在随访的1、3、7和10周进行了结构磁共振成像(MRI)。使用最新的基于点的形态学模型对双侧海马进行概述和宏观分析。随访结束后,癫痫发作后10周,用验尸标准的甲酚紫,氟玉石,蛋白脂蛋白1,波形蛋白,胶质原纤维酸性蛋白和离子钙结合适配器分子1染色评估海马的微结构变化。关键发现:注射组中的所有大鼠均发生癫痫发作。在随访的10周中,癫痫动物的同侧海马体积平均比对照组小8.76(平均值)±3.32%(标准差)。对侧海马显示出类似的总体积减少8.49(平均值)±3.27%(标准差)(p = 0.02)。两组之间发现明显的海马形状差异。癫痫诱发后受影响最大的区域是海马体的双侧背中位,背外侧和腹外侧区域。如在对照大鼠中检测到的,在癫痫大鼠的同侧海马中大体上不存在海马的正常发育形状变化。定量组织学分析显示,海马区神经元明显丧失,在肺门亚区最为明显,髓鞘变性,反应性星形细胞增多症和小胶质细胞活化均受损。我们发现神经元数量与海马体积之间存在弱但显着的相关性(r = 0.25,p = 0.0025)。意义:我们发现实验性局灶性新皮层癫痫发作后两个半球的海马病理学证据。观察到的双侧海马病理学发展在局灶性新皮层癫痫的早期发作,可能是与颞外定位相关性癫痫患者合并症的重要因素,例如认知功能障碍。

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