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癫痫发作期间短期血管舒缩反应的体外和体内研究

In Vitro and In Vivo Study of the Short-Term Vasomotor Response during Epileptic Seizures.

作者信息

Volnova Anna, Tsytsarev Vassiliy, Ptukha Maria, Inyushin Mikhail

机构信息

Biological Faculty, Saint Petersburg State University, St Petersburg 199034, Russia.

Institute of Translational Biomedicine, Saint Petersburg State University, St Petersburg 199034, Russia.

出版信息

Brain Sci. 2020 Dec 7;10(12):942. doi: 10.3390/brainsci10120942.

Abstract

Epilepsy remains one of the most common brain disorders, and the different types of epilepsy encompass a wide variety of physiological manifestations. Clinical and preclinical findings indicate that cerebral blood flow is usually focally increased at seizure onset, shortly after the beginning of ictal events. Nevertheless, many questions remain about the relationship between vasomotor changes in the epileptic foci and the epileptic behavior of neurons and astrocytes. To study this relationship, we performed a series of in vitro and in vivo experiments using the 4-aminopyridine model of epileptic seizures. It was found that in vitro pathological synchronization of neurons and the depolarization of astrocytes is accompanied by rapid short-term vasoconstriction, while in vivo vasodilation during the seizure prevails. We suggest that vasomotor activity during epileptic seizures is a correlate of the complex, self-sustained response that includes neuronal and astrocytic oscillations, and that underlies the clinical presentation of epilepsy.

摘要

癫痫仍然是最常见的脑部疾病之一,不同类型的癫痫涵盖了各种各样的生理表现。临床和临床前研究结果表明,在癫痫发作开始时,即发作事件开始后不久,脑血流量通常会局部增加。然而,关于癫痫病灶中的血管舒缩变化与神经元和星形胶质细胞的癫痫行为之间的关系,仍有许多问题。为了研究这种关系,我们使用癫痫发作的4-氨基吡啶模型进行了一系列体外和体内实验。结果发现,体外神经元的病理同步化和星形胶质细胞的去极化伴随着快速的短期血管收缩,而在体内癫痫发作期间血管舒张占主导。我们认为,癫痫发作期间的血管舒缩活动是包括神经元和星形胶质细胞振荡在内的复杂的、自我维持反应的一个相关因素,并且是癫痫临床表现的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ee/7762235/79f71b7678f9/brainsci-10-00942-g001.jpg

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