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Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy

Dysfunction of neuronal nitric oxide synthase contributes to neurotoxicity, which triggers cell death in various neuropathological diseases, including epilepsy. Studies have shown that inhibition of neuronal nitric oxide synthase activity increases the epilepsy threshold, that is, has an anticonvuls...

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Autores principales: Xu, Xiao-Xue, Shi, Rui-Xue, Fu, Yu, Wang, Jia-Lu, Tong, Xin, Zhang, Shi-Qi, Wang, Na, Li, Mei-Xuan, Tong, Yu, Wang, Wei, He, Miao, Liu, Bing-Yang, Chen, Gui-Lan, Guo, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9838157/
https://www.ncbi.nlm.nih.gov/pubmed/36453412
http://dx.doi.org/10.4103/1673-5374.357906
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author Xu, Xiao-Xue
Shi, Rui-Xue
Fu, Yu
Wang, Jia-Lu
Tong, Xin
Zhang, Shi-Qi
Wang, Na
Li, Mei-Xuan
Tong, Yu
Wang, Wei
He, Miao
Liu, Bing-Yang
Chen, Gui-Lan
Guo, Feng
author_facet Xu, Xiao-Xue
Shi, Rui-Xue
Fu, Yu
Wang, Jia-Lu
Tong, Xin
Zhang, Shi-Qi
Wang, Na
Li, Mei-Xuan
Tong, Yu
Wang, Wei
He, Miao
Liu, Bing-Yang
Chen, Gui-Lan
Guo, Feng
author_sort Xu, Xiao-Xue
collection PubMed
description Dysfunction of neuronal nitric oxide synthase contributes to neurotoxicity, which triggers cell death in various neuropathological diseases, including epilepsy. Studies have shown that inhibition of neuronal nitric oxide synthase activity increases the epilepsy threshold, that is, has an anticonvulsant effect. However, the exact role and potential mechanism of neuronal nitric oxide synthase in seizures are still unclear. In this study, we performed RNA sequencing, functional enrichment analysis, and weighted gene coexpression network analysis of the hippocampus of tremor rats, a rat model of genetic epilepsy. We found damaged hippocampal mitochondria and abnormal succinate dehydrogenase level and Na(+)-K(+)-ATPase activity. In addition, we used a pilocarpine-induced N2a cell model to mimic epileptic injury. After application of neuronal nitric oxide synthase inhibitor 7-nitroindazole, changes in malondialdehyde, lactate dehydrogenase and superoxide dismutase, which are associated with oxidative stress, were reversed, and the increase in reactive oxygen species level was reversed by 7-nitroindazole or reactive oxygen species inhibitor N-acetylcysteine. Application of 7-nitroindazole or N-acetylcysteine downregulated the expression of caspase-3 and cytochrome c and reversed the apoptosis of epileptic cells. Furthermore, 7-nitroindazole or N-acetylcysteine downregulated the abnormally high expression of NLRP3, gasdermin-D, interleukin-1β and interleukin-18. This indicated that 7-nitroindazole and N-acetylcysteine each reversed epileptic cell death. Taken together, our findings suggest that the neuronal nitric oxide synthase/reactive oxygen species pathway is involved in pyroptosis of epileptic cells, and inhibiting neuronal nitric oxide synthase activity or its induced oxidative stress may play a neuroprotective role in epilepsy.
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spelling pubmed-98381572023-01-14 Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy Xu, Xiao-Xue Shi, Rui-Xue Fu, Yu Wang, Jia-Lu Tong, Xin Zhang, Shi-Qi Wang, Na Li, Mei-Xuan Tong, Yu Wang, Wei He, Miao Liu, Bing-Yang Chen, Gui-Lan Guo, Feng Neural Regen Res Research Article Dysfunction of neuronal nitric oxide synthase contributes to neurotoxicity, which triggers cell death in various neuropathological diseases, including epilepsy. Studies have shown that inhibition of neuronal nitric oxide synthase activity increases the epilepsy threshold, that is, has an anticonvulsant effect. However, the exact role and potential mechanism of neuronal nitric oxide synthase in seizures are still unclear. In this study, we performed RNA sequencing, functional enrichment analysis, and weighted gene coexpression network analysis of the hippocampus of tremor rats, a rat model of genetic epilepsy. We found damaged hippocampal mitochondria and abnormal succinate dehydrogenase level and Na(+)-K(+)-ATPase activity. In addition, we used a pilocarpine-induced N2a cell model to mimic epileptic injury. After application of neuronal nitric oxide synthase inhibitor 7-nitroindazole, changes in malondialdehyde, lactate dehydrogenase and superoxide dismutase, which are associated with oxidative stress, were reversed, and the increase in reactive oxygen species level was reversed by 7-nitroindazole or reactive oxygen species inhibitor N-acetylcysteine. Application of 7-nitroindazole or N-acetylcysteine downregulated the expression of caspase-3 and cytochrome c and reversed the apoptosis of epileptic cells. Furthermore, 7-nitroindazole or N-acetylcysteine downregulated the abnormally high expression of NLRP3, gasdermin-D, interleukin-1β and interleukin-18. This indicated that 7-nitroindazole and N-acetylcysteine each reversed epileptic cell death. Taken together, our findings suggest that the neuronal nitric oxide synthase/reactive oxygen species pathway is involved in pyroptosis of epileptic cells, and inhibiting neuronal nitric oxide synthase activity or its induced oxidative stress may play a neuroprotective role in epilepsy. Wolters Kluwer - Medknow 2022-10-11 /pmc/articles/PMC9838157/ /pubmed/36453412 http://dx.doi.org/10.4103/1673-5374.357906 Text en Copyright: © Neural Regeneration Research https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Research Article
Xu, Xiao-Xue
Shi, Rui-Xue
Fu, Yu
Wang, Jia-Lu
Tong, Xin
Zhang, Shi-Qi
Wang, Na
Li, Mei-Xuan
Tong, Yu
Wang, Wei
He, Miao
Liu, Bing-Yang
Chen, Gui-Lan
Guo, Feng
Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
title Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
title_full Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
title_fullStr Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
title_full_unstemmed Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
title_short Neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
title_sort neuronal nitric oxide synthase/reactive oxygen species pathway is involved in apoptosis and pyroptosis in epilepsy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9838157/
https://www.ncbi.nlm.nih.gov/pubmed/36453412
http://dx.doi.org/10.4103/1673-5374.357906
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