首页> 外文期刊>Frontiers in Systems Neuroscience >The Influence of Regional Distribution and Pharmacologic Specificity of GABA AR Subtype Expression on Anesthesia and Emergence
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The Influence of Regional Distribution and Pharmacologic Specificity of GABA AR Subtype Expression on Anesthesia and Emergence

机译:GABA A R亚型表达的区域分布和药理特异性对麻醉和出现的影响

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Anesthetics produce unconsciousness by modulating ion channels that control neuronal excitability. Research has shown that specific GABA_(A)receptor (GABA_(A)R) subtypes in particular regions of the central nervous system contribute to different hyperpolarizing conductances, and behaviorally to distinct components of the anesthetized state. The expression of these receptors on the neuron cell surface, and thus the strength of inhibitory neurotransmission, is dynamically regulated by intracellular trafficking mechanisms. Pharmacologic or activity-based perturbations to these regulatory systems have been implicated in pathology of several neurological conditions, and can alter the individual response to anesthesia. Furthermore, studies are beginning to uncover how anesthetic exposure itself elicits enduring changes in subcellular physiology, including the processes that regulate ion channel trafficking. Here, we review the mechanisms that determine GABA_(A)R surface expression, and elaborate on influences germane to anesthesia and emergence. We address known trafficking differences between the intrasynaptic receptors that mediate phasic current and the extra-synaptic receptors mediating tonic current. We also describe neurophysiologic consequences and network-level abnormalities in brain function that result from receptor trafficking aberrations. We hypothesize that the relationship between commonly used anesthetic agents and GABA_(A)R surface expression has direct consequences on mature functioning neural networks and by extension ultimately influence the outcome of patients that undergo general anesthesia. Rational design of new anesthetics, anesthetic techniques, EEG-based monitoring strategies, or emergence treatments will need to take these effects into consideration.
机译:麻醉药通过调节控制神经元兴奋性的离子通道而产生无意识。研究表明,中枢神经系统特定区域中的特定GABA_(A)受体(GABA_(A)R)亚型会导致不同的超极化电导,并且在行为上会影响麻醉状态的不同组成部分。这些受体在神经元细胞表面的表达,以及抑制性神经传递的强度,是由细胞内运输机制动态调节的。对这些调节系统的药理或基于活动的扰动已经牵涉到几种神经系统疾病的病理学中,并且可以改变个体对麻醉的反应。此外,研究开始揭露麻醉剂暴露本身如何引起亚细胞生理学的持久变化,包括调节离子通道运输的过程。在这里,我们审查确定GABA_(A)R表面表达的机制,并详细说明与麻醉和出现密切相关的影响。我们解决介导相电流的突触内受体与介导强直电流的突触外受体之间已知的运输差异。我们还描述了由于受体运输异常导致的脑功能的神经生理后果和网络级异常。我们假设常用的麻醉剂和GABA_(A)R表面表达之间的关系对成熟的功能神经网络有直接的影响,并最终扩展到接受全身麻醉的患者的结局。新麻醉药,麻醉技术,基于EEG的监测策略或紧急治疗的合理设计需要考虑这些影响。

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