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扁形动物的睡眠和觉醒的神经递质。

Neurotransmitters of sleep and wakefulness in flatworms.

机构信息

School of Agriculture, Biomedicine and Environment, La Trobe University, Melbourne, Australia.

School of Psychology and Public Health, La Trobe University, Melbourne, Australia.

出版信息

Sleep. 2022 May 12;45(5). doi: 10.1093/sleep/zsac053. Epub 2022 Mar 7.

Abstract

STUDY OBJECTIVES

Sleep is a prominent behavioral and biochemical state observed in all animals studied, including platyhelminth flatworms. Investigations into the biochemical mechanisms associated with sleep-and wakefulness-are important for understanding how these states are regulated and how that regulation changed with the evolution of new types of animals. Unfortunately, beyond a handful of vertebrates, such studies on invertebrates are rare.

METHODS

We investigated the effect of seven neurotransmitters, and one pharmacological compound, that modulate either sleep or wakefulness in mammals, on flatworms (Girardia tigrina). Flatworms were exposed via ingestion and diffusion to four neurotransmitters that promote wakefulness in vertebrates (acetylcholine, dopamine, glutamate, histamine), and three that induce sleep (adenosine, GABA, serotonin) along with the H1 histamine receptor antagonist pyrilamine. Compounds were administered over concentrations spanning three to five orders of magnitude. Flatworms were then transferred to fresh water and video recorded for analysis.

RESULTS

Dopamine and histamine decreased the time spent inactive and increased distance traveled, consistent with their wake-promoting effect in vertebrates and fruit flies; pyrilamine increased restfulness and GABA showed a nonsignificant trend towards promoting restfulness in a dose-dependent manner, in agreement with their sleep-inducing effect in vertebrates, fruit flies, and Hydra. Similar to Hydra, acetylcholine, glutamate, and serotonin, but also adenosine, had no apparent effect on flatworm behavior.

CONCLUSIONS

These data demonstrate the potential of neurotransmitters to regulate sleep and wakefulness in flatworms and highlight the conserved action of some neurotransmitters across species.

摘要

研究目的

睡眠是所有被研究动物(包括扁形动物扁虫)表现出的一种显著的行为和生化状态。研究与睡眠和觉醒相关的生化机制对于理解这些状态是如何被调节的以及这些调节是如何随着新类型动物的进化而变化的,这一点非常重要。不幸的是,除了少数几种脊椎动物外,关于无脊椎动物的此类研究很少。

方法

我们研究了七种神经递质和一种药理学化合物对扁虫(Girardia tigrina)的影响,这些递质或化合物在哺乳动物中调节睡眠或觉醒。扁虫通过摄入和扩散接触到四种促进脊椎动物觉醒的神经递质(乙酰胆碱、多巴胺、谷氨酸、组胺),以及三种诱导睡眠的神经递质(腺苷、GABA、血清素),以及 H1 组胺受体拮抗剂吡拉明。化合物的给药浓度跨越三个到五个数量级。然后将扁虫转移到新鲜水中并进行视频记录以进行分析。

结果

多巴胺和组胺降低了扁虫不活动的时间,并增加了它们的移动距离,这与它们在脊椎动物和果蝇中的促觉醒作用一致;吡拉明增加了休息状态,GABA 以剂量依赖的方式显示出促进休息的非显著趋势,这与它们在脊椎动物、果蝇和水螅中诱导睡眠的作用一致。与水螅一样,乙酰胆碱、谷氨酸和血清素,但也包括腺苷,对扁虫的行为没有明显影响。

结论

这些数据表明神经递质有可能调节扁虫的睡眠和觉醒,并突出了一些神经递质在不同物种中的保守作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edbd/9216492/20d4f638e573/zsac053_fig1.jpg

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