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异丙酚麻醉对静息状态和自然聆听时分子富集网络的影响。

The effects of propofol anaesthesia on molecular-enriched networks during resting-state and naturalistic listening.

机构信息

Department of Neuroimaging, Institute of Psychiatry, Psychology and Neuroscience, King's college London, London, UK.

Department of Neuroimaging, Institute of Psychiatry, Psychology and Neuroscience, King's college London, London, UK.

出版信息

Neuroimage. 2023 May 1;271:120018. doi: 10.1016/j.neuroimage.2023.120018. Epub 2023 Mar 17.

Abstract

Placing a patient in a state of anaesthesia is crucial for modern surgical practice. However, the mechanisms by which anaesthetic drugs, such as propofol, impart their effects on consciousness remain poorly understood. Propofol potentiates GABAergic transmission, which purportedly has direct actions on cortex as well as indirect actions via ascending neuromodulatory systems. Functional imaging studies to date have been limited in their ability to unravel how these effects on neurotransmission impact the system-level dynamics of the brain. Here, we leveraged advances in multi-modal imaging, Receptor-Enriched Analysis of functional Connectivity by Targets (REACT), to investigate how different levels of propofol-induced sedation alter neurotransmission-related functional connectivity (FC), both at rest and when individuals are exposed to naturalistic auditory stimulation. Propofol increased GABA-A- and noradrenaline transporter-enriched FC within occipital and somatosensory regions respectively. Additionally, during auditory stimulation, the network related to the dopamine transporter showed reduced FC within bilateral regions of temporal and mid/posterior cingulate cortices, with the right temporal cluster showing an interaction between auditory stimulation and level of consciousness. In bringing together these micro- and macro-scale systems, we provide support for both direct GABAergic and indirect noradrenergic and dopaminergic-related network changes under propofol sedation. Further, we delineate a cognition-related reconfiguration of the dopaminergic network, highlighting the utility of REACT to explore the molecular substrates of consciousness and cognition.

摘要

将患者置于麻醉状态对于现代外科手术至关重要。然而,麻醉药物(如丙泊酚)发挥作用的机制仍知之甚少。丙泊酚增强 GABA 能传递,据称其对皮质具有直接作用,也通过上行神经调制系统产生间接作用。迄今为止,功能成像研究在揭示这些神经传递效应如何影响大脑的系统级动力学方面能力有限。在这里,我们利用多模态成像、基于靶点的受体丰富分析功能连接性(REACT)的进展,研究不同水平的丙泊酚诱导镇静如何改变神经传递相关的功能连接性(FC),包括在休息时和个体暴露于自然听觉刺激时。丙泊酚分别增加了枕叶和躯体感觉区域中 GABA-A 和去甲肾上腺素转运体丰富的 FC。此外,在听觉刺激期间,与多巴胺转运体相关的网络在双侧颞叶和中/后扣带回皮质区域显示出 FC 降低,右侧颞叶簇显示出听觉刺激和意识水平之间的相互作用。通过将这些微观和宏观系统结合起来,我们为丙泊酚镇静下直接的 GABA 能和间接的去甲肾上腺素能和多巴胺能相关网络变化提供了支持。此外,我们描绘了多巴胺能网络与认知相关的重新配置,突出了 REACT 探索意识和认知的分子基础的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/174e/10410200/b6b5f8fd5edc/gr1.jpg

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