Garbuz David G, Davletshin Artem A, Litvinova Svetlana A, Fedotova Irina B, Surina Natalya M, Poletaeva Inga I
Laboratory of Molecular Mechanisms of Biological Adaptation, Engelhardt Institute of Molecular Biology of the Russian Academy of Sciences, 119991 Moscow, Russia.
Laboratory of Psychopharmacology of FSBI "Zakusov Institute of Pharmacology", 125315 Moscow, Russia.
Biomedicines. 2022 Nov 15;10(11):2934. doi: 10.3390/biomedicines10112934.
Animal models of epilepsy are of great importance in epileptology. They are used to study the mechanisms of epileptogenesis, and search for new genes and regulatory pathways involved in the development of epilepsy as well as screening new antiepileptic drugs. Today, many methods of modeling epilepsy in animals are used, including electroconvulsive, pharmacological in intact animals, and genetic, with the predisposition for spontaneous or refractory epileptic seizures. Due to the simplicity of manipulation and universality, genetic models of audiogenic epilepsy in rodents stand out among this diversity. We tried to combine data on the genetics of audiogenic epilepsy in rodents, the relevance of various models of audiogenic epilepsy to certain epileptic syndromes in humans, and the advantages of using of rodent strains predisposed to audiogenic epilepsy in current epileptology.
癫痫动物模型在癫痫学中具有重要意义。它们被用于研究癫痫发生的机制,寻找参与癫痫发展的新基因和调控途径,以及筛选新的抗癫痫药物。如今,人们使用多种在动物身上建立癫痫模型的方法,包括电惊厥法、对完整动物进行药理学方法以及遗传方法,这些方法易引发自发性或难治性癫痫发作。由于操作简便且具有通用性,啮齿动物听源性癫痫的遗传模型在这众多模型中脱颖而出。我们试图整合关于啮齿动物听源性癫痫遗传学的数据、各种听源性癫痫模型与人类某些癫痫综合征的相关性,以及在当前癫痫学中使用易患听源性癫痫的啮齿动物品系的优势。