Research Group Synaptic Wiring and Information Processing, Center for Molecular Neurobiology Hamburg, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Institute of Developmental Neurophysiology, Center for Molecular Neurobiology Hamburg, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
PLoS Biol. 2021 Apr 1;19(4):e3001146. doi: 10.1371/journal.pbio.3001146. eCollection 2021 Apr.
General anesthesia is characterized by reversible loss of consciousness accompanied by transient amnesia. Yet, long-term memory impairment is an undesirable side effect. How different types of general anesthetics (GAs) affect the hippocampus, a brain region central to memory formation and consolidation, is poorly understood. Using extracellular recordings, chronic 2-photon imaging, and behavioral analysis, we monitor the effects of isoflurane (Iso), medetomidine/midazolam/fentanyl (MMF), and ketamine/xylazine (Keta/Xyl) on network activity and structural spine dynamics in the hippocampal CA1 area of adult mice. GAs robustly reduced spiking activity, decorrelated cellular ensembles, albeit with distinct activity signatures, and altered spine dynamics. CA1 network activity under all 3 anesthetics was different to natural sleep. Iso anesthesia most closely resembled unperturbed activity during wakefulness and sleep, and network alterations recovered more readily than with Keta/Xyl and MMF. Correspondingly, memory consolidation was impaired after exposure to Keta/Xyl and MMF, but not Iso. Thus, different anesthetics distinctly alter hippocampal network dynamics, synaptic connectivity, and memory consolidation, with implications for GA strategy appraisal in animal research and clinical settings.
全身麻醉的特点是意识可逆丧失,并伴有短暂的健忘。然而,长期记忆损伤是一种不理想的副作用。不同类型的全身麻醉剂(GAs)如何影响海马体,海马体是记忆形成和巩固的大脑区域的中心,这一点了解甚少。我们使用细胞外记录、慢性双光子成像和行为分析,监测异氟烷(Iso)、甲咪/咪达唑仑/芬太尼(MMF)和氯胺酮/二甲噻嗪(Keta/Xyl)对成年小鼠海马 CA1 区网络活动和结构棘突动力学的影响。GAs 强烈降低了棘突活动,使细胞集合去相关,尽管具有不同的活动特征,但改变了棘突动力学。所有 3 种麻醉剂下的 CA1 网络活动都与自然睡眠不同。Iso 麻醉最类似于清醒和睡眠期间未受干扰的活动,与 Keta/Xyl 和 MMF 相比,网络改变更容易恢复。相应地,在接触 Keta/Xyl 和 MMF 后,记忆巩固受损,但 Iso 则没有。因此,不同的麻醉剂明显改变海马体网络动力学、突触连接和记忆巩固,这对动物研究和临床环境中的 GA 策略评估具有重要意义。