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七氟醚暴露于新生儿可通过调节 SK2 通道和幼年大鼠海马中的 GluA2 缺失型 AMPA 受体引起认知缺陷。

Neonatal exposure to sevoflurane caused cognitive deficits by dysregulating SK2 channels and GluA2-lacking AMPA receptors in juvenile rat hippocampus.

机构信息

Department of Anesthesiology, Guizhou Provincial People's Hospital, Guiyang, China.

Department of Anesthesiology, Guizhou Provincial People's Hospital, Guiyang, China.

出版信息

Neuropharmacology. 2018 Oct;141:66-75. doi: 10.1016/j.neuropharm.2018.08.014. Epub 2018 Aug 22.

DOI:10.1016/j.neuropharm.2018.08.014
PMID:30142400
Abstract

Anesthetics exposure to neonates leads to impairment of hippocampal synaptic plasticity and cognitive functions later in life. This phenomenon complies with the concept of metaplasticity: a priming stimulation can affect induction of synaptic plasticity mins or days later. We aimed to understand whether small conductance Ca-activated potassium channel type2 (SK2) and subunit composition of AMPA receptors are altered and contribute to sevoflurane-induced metaplasticity. To fulfill this goal, we exposed neonatal rats (postnatal day 7) to 2% sevoflurane for 2 h (sevoflurane rats) and examined synaptic plasticity in the hippocampus and cognitive function in juvenile rats (postnatal day 30-35). We observed that the juvenile sevoflurane rats showed elevation in the threshold for LTP induction, facilitation of LTD induction, and cognitive dysfunctions. Meanwhile, these rats also exhibited increased surface expression of SK2 and enhanced synaptic recruitment of GluA2-lacking AMPA receptors, which possess stronger inward rectification. Blocking SK2 eliminated inward rectification of AMPA receptors in juvenile sevoflurane rats. Interestingly, blocking either SK2 channels or GluA2-lacking AMPA receptors normalized LTP, LTD, and spatial memory in juvenile sevoflurane rats. Our data indicate that neonatal sevoflurane anesthesia have negative impact on cognitive function extended to juvenile rats probably through increasing surface expression of SK2 and synaptic recruitment of GluA2-lacking AMPA receptors. This study provides a new sight for sevoflurane induced metaplasticity.

摘要

麻醉剂暴露于新生儿会导致海马突触可塑性和认知功能受损,这种现象符合超可塑性的概念:启动刺激可以影响几分钟或几天之后的突触可塑性诱导。我们旨在了解小电导钙激活钾通道 2 型 (SK2) 和 AMPA 受体亚基组成是否发生改变,并有助于七氟醚诱导的超可塑性。为了实现这一目标,我们将新生大鼠(出生后第 7 天)暴露于 2%七氟醚中 2 小时(七氟醚组),并检查幼鼠(出生后第 30-35 天)海马中的突触可塑性和认知功能。我们观察到,幼鼠七氟醚组表现出 LTP 诱导阈值升高、LTD 诱导易化和认知功能障碍。同时,这些大鼠还表现出 SK2 表面表达增加和缺乏 GluA2 的 AMPA 受体的突触募集增强,后者具有更强的内向整流。阻断 SK2 消除了幼鼠七氟醚中 AMPA 受体的内向整流。有趣的是,阻断 SK2 通道或缺乏 GluA2 的 AMPA 受体均可使幼鼠七氟醚中的 LTP、LTD 和空间记忆正常化。我们的数据表明,新生儿七氟醚麻醉对认知功能的负面影响会延伸到幼鼠,可能是通过增加 SK2 的表面表达和缺乏 GluA2 的 AMPA 受体的突触募集。这项研究为七氟醚诱导的超可塑性提供了新的视角。

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