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涡虫的伤害感受:来自一种蜷缩扁虫的启示

Planarian nociception: Lessons from a scrunching flatworm.

作者信息

Reho Guillaume, Lelièvre Vincent, Cadiou Hervé

机构信息

Institut des Neurosciences Cellulaires et Intégratives, UPR 3212, Centre National de la Recherche Scientifique, Strasbourg, France.

出版信息

Front Mol Neurosci. 2022 Jul 26;15:935918. doi: 10.3389/fnmol.2022.935918. eCollection 2022.

Abstract

In addition to being studied for their exceptional regeneration abilities, planarians (i.e., flatworms) have also been extensively used in the context of pharmacological experiments during the past century. Many researchers used planarians as a model system for the study of drug abuse because they display high similarities with the nervous system of vertebrates at cellular and molecular levels (e.g., neuronal morphology, neurotransmitter ligands, and receptor function). This research field recently led to the discovery of causal relationships between the expression of Transient Receptor Potential ion channels in planarians and their behavioral responses to noxious stimuli such as heat, cold or pharmacological analogs such as TRP agonists, among others. It has also been shown that some antinociceptive drugs modulate these behaviors. However, among the few authors that tried to implement a full behavior analysis, none reached a consensual use of the terms used to describe planarian gaits yet, nor did they establish a comprehensive description of a potential planarian nociceptive system. The aim of this review is therefore to aggregate the ancient and the most recent evidence for a true nociceptive behavior in planarians. It also highlights the convenience and relevance of this invertebrate model for nociceptive tests and suggests further lines of research. In regards to past pharmacological studies, this review finally discusses the opportunities given by the model to extensively screen for novel antinociceptive drugs.

摘要

除了因其卓越的再生能力而受到研究外,涡虫(即扁虫)在过去一个世纪还被广泛用于药理学实验。许多研究人员将涡虫用作药物滥用研究的模型系统,因为它们在细胞和分子水平上与脊椎动物的神经系统表现出高度相似性(例如,神经元形态、神经递质配体和受体功能)。该研究领域最近发现了涡虫中瞬时受体电位离子通道的表达与其对热、冷等有害刺激或TRP激动剂等药理学类似物的行为反应之间的因果关系。研究还表明,一些镇痛药物会调节这些行为。然而,在少数尝试进行全面行为分析的作者中,没有人就用于描述涡虫步态的术语达成一致使用,也没有建立对潜在涡虫伤害感受系统的全面描述。因此,本综述的目的是汇总关于涡虫真正伤害感受行为的古老和最新证据。它还强调了这种无脊椎动物模型在伤害感受测试中的便利性和相关性,并提出了进一步的研究方向。关于过去的药理学研究,本综述最后讨论了该模型为广泛筛选新型镇痛药物提供的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a094/9362985/24bcc3ec493f/fnmol-15-935918-g001.jpg

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