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氙气麻醉和神经保护特性相关的细胞机制:临床前文献的系统综述

The cellular mechanisms associated with the anesthetic and neuroprotective properties of xenon: a systematic review of the preclinical literature.

作者信息

McGuigan Steven, Marie Daniel J, O'Bryan Liam J, Flores Francisco J, Evered Lisbeth, Silbert Brendan, Scott David A

机构信息

Department of Anesthesia and Acute Pain Medicine, St. Vincent's Hospital, Melbourne, VIC, Australia.

Department of Critical Care, University of Melbourne, Melbourne, VIC, Australia.

出版信息

Front Neurosci. 2023 Jul 14;17:1225191. doi: 10.3389/fnins.2023.1225191. eCollection 2023.

Abstract

INTRODUCTION

Xenon exhibits significant neuroprotection against a wide range of neurological insults in animal models. However, clinical evidence that xenon improves outcomes in human studies of neurological injury remains elusive. Previous reviews of xenon's method of action have not been performed in a systematic manner. The aim of this review is to provide a comprehensive summary of the evidence underlying the cellular interactions responsible for two phenomena associated with xenon administration: anesthesia and neuroprotection.

METHODS

A systematic review of the preclinical literature was carried out according to the PRISMA guidelines and a review protocol was registered with PROSPERO. The review included both models of the central nervous system and mammalian studies. The search was performed on 27th May 2022 in the following databases: Ovid Medline, Ovid Embase, Ovid Emcare, APA PsycInfo, and Web of Science. A risk of bias assessment was performed utilizing the Office of Health Assessment and Translation tool. Given the heterogeneity of the outcome data, a narrative synthesis was performed.

RESULTS

The review identified 69 articles describing 638 individual experiments in which a hypothesis was tested regarding the interaction of xenon with cellular targets including: membrane bound proteins, intracellular signaling cascades and transcription factors. Xenon has both common and subtype specific interactions with ionotropic glutamate receptors. Xenon also influences the release of inhibitory neurotransmitters and influences multiple other ligand gated and non-ligand gated membrane bound proteins. The review identified several intracellular signaling pathways and gene transcription factors that are influenced by xenon administration and might contribute to anesthesia and neuroprotection.

DISCUSSION

The nature of xenon NMDA receptor antagonism, and its range of additional cellular targets, distinguishes it from other NMDA antagonists such as ketamine and nitrous oxide. This is reflected in the distinct behavioral and electrophysiological characteristics of xenon. Xenon influences multiple overlapping cellular processes, both at the cell membrane and within the cell, that promote cell survival. It is hoped that identification of the underlying cellular targets of xenon might aid the development of potential therapeutics for neurological injury and improve the clinical utilization of xenon.

SYSTEMATIC REVIEW REGISTRATION

https://www.crd.york.ac.uk/prospero/, identifier: 336871.

摘要

引言

在动物模型中,氙气对多种神经损伤具有显著的神经保护作用。然而,在人类神经损伤研究中,氙气能改善预后的临床证据仍然难以捉摸。以往对氙气作用机制的综述并未采用系统的方法进行。本综述的目的是全面总结与氙气给药相关的两种现象(麻醉和神经保护)背后的细胞相互作用的证据。

方法

根据PRISMA指南对临床前文献进行系统综述,并在PROSPERO上注册了综述方案。该综述包括中枢神经系统模型和哺乳动物研究。检索于2022年5月27日在以下数据库中进行:Ovid Medline、Ovid Embase、Ovid Emcare、APA PsycInfo和Web of Science。利用健康评估与翻译办公室工具进行偏倚风险评估。鉴于结果数据的异质性,进行了叙述性综合分析。

结果

该综述确定了69篇文章,描述了638个单独的实验,其中测试了关于氙气与细胞靶点(包括膜结合蛋白、细胞内信号级联和转录因子)相互作用的假设。氙气与离子型谷氨酸受体既有共同的相互作用,也有亚型特异性的相互作用。氙气还影响抑制性神经递质的释放,并影响多种其他配体门控和非配体门控的膜结合蛋白。该综述确定了几种受氙气给药影响的细胞内信号通路和基因转录因子,它们可能有助于麻醉和神经保护。

讨论

氙气对N-甲基-D-天冬氨酸(NMDA)受体的拮抗性质及其一系列额外的细胞靶点,使其有别于其他NMDA拮抗剂,如氯胺酮和一氧化二氮。这反映在氙气独特的行为和电生理特征上。氙气影响细胞膜和细胞内多个重叠的细胞过程,这些过程促进细胞存活。希望确定氙气潜在的细胞靶点可能有助于开发针对神经损伤的潜在治疗方法,并改善氙气的临床应用。

系统综述注册

https://www.crd.york.ac.uk/prospero/,标识符:336871。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47b5/10380949/b2d9ac41e3cc/fnins-17-1225191-g0001.jpg

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