小鼠出生后反复暴露于七氟烷会破坏海马中GABA能神经元的活动和发育,从而损害小鼠的社会识别能力。

IF 9.1 1区 医学 Q1 ANESTHESIOLOGY
Shuai Wang , Zijie Li , Xin Liu , Shiyue Fan , Xuejiao Wang , Jianjun Chang , Ling Qin , Ping Zhao
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引用次数: 0

摘要

背景:在早期发育阶段反复暴露于七氟烷是社会行为障碍的一个危险因素,但其潜在的神经病理学机制仍不清楚。由于海马胼胝体第 2 亚区(CA2)是社会认知功能的关键中心,我们假设七氟烷暴露可通过破坏 CA2 的神经元活动导致社会行为障碍:方法:在新生小鼠出生后第 6、8 和 10 天用 3 Vol% 的七氟烷麻醉 2 小时。在出生后第 12 天对 CA2 组织进行大量 RNA 测序。社会认知功能通过行为实验进行评估,体内CA2神经元活动在PND 60-65时通过多通道电极进行记录:结果:出生后反复暴露于七氟烷会损害成年后的社会新奇事物识别能力。结果表明:出生后反复暴露于七氟烷会损害成年后的社会新奇感识别能力,同时也会导致社交互动过程中CA2中神经元尖峰的同步性、伽马振荡功率以及GABA能尖峰与伽马振荡之间的尖峰锁相降低。七氟醚暴露后,我们观察到CA2 GABA能神经元的密度和树突复杂性降低,对GABA能神经元发育至关重要的转录因子表达减少:结论:出生后反复暴露于七氟烷会通过下调重要转录因子干扰CA2 GABA能神经元的发育。这导致成年GABA能神经元的电生理功能受损,从而导致社交识别障碍。这些发现揭示了七氟烷诱导的长期社会识别障碍的潜在电生理机制,并强调了CA2 GABA能神经元在社会交往中的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Repeated postnatal sevoflurane exposure impairs social recognition in mice by disrupting GABAergic neuronal activity and development in hippocampus

Background

Repeated exposure to sevoflurane during early developmental stages is a risk factor for social behavioural disorders, but the underlying neuropathological mechanisms remain unclear. As the hippocampal cornu ammonis area 2 subregion (CA2) is a critical centre for social cognitive functions, we hypothesised that sevoflurane exposure can lead to social behavioural disorders by disrupting neuronal activity in the CA2.

Methods

Neonatal mice were anaesthetised with sevoflurane 3 vol% for 2 h on postnatal day (PND) 6, 8, and 10. Bulk RNA sequencing of CA2 tissue was conducted on PND 12. Social cognitive function was assessed by behavioural experiments, and in vivo CA2 neuronal activity was recorded by multi-channel electrodes on PND 60–65.

Results

Repeated postnatal exposure to sevoflurane impaired social novelty recognition in adulthood. It also caused a decrease in the synchronisation of neuronal spiking, gamma oscillation power, and spike phase-locking between GABAergic spiking and gamma oscillations in the CA2 during social interaction. After sevoflurane exposure, we observed a reduction in the density and dendritic complexity of CA2 GABAergic neurones, and decreased expression of transcription factors critical for GABAergic neuronal development after.

Conclusions

Repeated postnatal exposure to sevoflurane disturbed the development of CA2 GABAergic neurones through downregulation of essential transcription factors. This resulted in impaired electrophysiological function in adult GABAergic neurones, leading to social recognition deficits. These findings reveal a potential electrophysiological mechanism underlying the long-term social recognition deficits induced by sevoflurane and highlight the crucial role of CA2 GABAergic neurones in social interactions.

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来源期刊
CiteScore
13.50
自引率
7.10%
发文量
488
审稿时长
27 days
期刊介绍: The British Journal of Anaesthesia (BJA) is a prestigious publication that covers a wide range of topics in anaesthesia, critical care medicine, pain medicine, and perioperative medicine. It aims to disseminate high-impact original research, spanning fundamental, translational, and clinical sciences, as well as clinical practice, technology, education, and training. Additionally, the journal features review articles, notable case reports, correspondence, and special articles that appeal to a broader audience. The BJA is proudly associated with The Royal College of Anaesthetists, The College of Anaesthesiologists of Ireland, and The Hong Kong College of Anaesthesiologists. This partnership provides members of these esteemed institutions with access to not only the BJA but also its sister publication, BJA Education. It is essential to note that both journals maintain their editorial independence. Overall, the BJA offers a diverse and comprehensive platform for anaesthetists, critical care physicians, pain specialists, and perioperative medicine practitioners to contribute and stay updated with the latest advancements in their respective fields.
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