Adeno-Associated Viral Vectors in the Treatment of Epilepsy

Epilepsy is a brain disorder characterized by a persistent predisposition to epileptic seizures. With various etiologies of epilepsy, a significant proportion of patients develop pharmacoresistance to antiepileptic drugs, which necessitates the search for new therapeutic methods, in particular, using gene therapy. This review discusses the use of adeno-associated viral (AAV) vectors in gene therapy for epilepsy, emphasizing their advantages, such as high efficiency of neuronal tissue transduction and low immunogenicity/cytotoxicity. AAV vectors provide the possibility of personalized therapy due to the diversity of serotypes and genomic constructs, which allows for increasing the specificity and effectiveness of treatment. Promising orientations include the modulation of the expression of neuropeptides, ion channels, transcription, and neurotrophic factors, as well as the use of antisense oligonucleotides to regulate seizure activity, which can reduce the severity of epileptic disorders. This review summarizes the current advances in the use of AAV vectors for the treatment of epilepsy of various etiologies, demonstrating the significant potential of AAV vectors for the development of personalized and more effective approaches to reducing seizure activity and improving patient prognosis.

Авторы
Mullagulova A.I. 1 , Timechko E.E. 2 , Solovyeva V.V. 1 , Yakimov A.M. 2 , Ibrahim A. 1 , Dmitrenko D.V. 2 , Sufianov A.A. 3, 4 , Sufianova G.Z. 5 , Rizvanov A.A. 1, 6
Издательство
Molecular Diversity Preservation International
Номер выпуска
22
Язык
Английский
Страницы
12081
Статус
Опубликовано
Том
25
Год
2024
Организации
  • 1 Kazan Federal University
  • 2 Krasnoyarsk State Medical University
  • 3 Sechenov First Moscow State Medical University (Sechenov University)
  • 4 Peoples' Friendship University of Russia
  • 5 Tyumen State Medical University
  • 6 Academy of Sciences of the Republic of Tatarstan
Ключевые слова
adeno-associated virus; epilepsy; gene therapy; neuropeptides; ion channels; receptors; transcription factors; neurotrophic factors; antisense oligonucleotides
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