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嗅觉系统在气味诱导抗疲劳作用中的参与。

Involvement of the olfactory system in the induction of anti-fatigue effects by odorants.

机构信息

Kansei Science Research, Kao Corporation, Haga, Tochigi, Japan.

Health Metrics Development Team, RIKEN Compass to Healthy Life Research Complex Program, Kobe, Hyogo, Japan.

出版信息

PLoS One. 2018 Mar 29;13(3):e0195263. doi: 10.1371/journal.pone.0195263. eCollection 2018.

Abstract

Some components of the neural circuits underlying innate odor-evoked responses have recently been elucidated. Odor information detected by the olfactory receptors is transmitted from the olfactory bulb to the cortical amygdala, where physiological and emotional states such as attraction or avoidance are controlled. Thus, activation of specific olfactory receptors can elicit changes in physiological and/or psychological state. Here, we examined on the odorant Hex-Hex Mix, which has been reported to induce anti-fatigue effects. Fatigue is a prevalent condition that is often related to overwork and psychological stress. Various anti-fatigue treatments have been developed, including supplements and odorants. However, the mechanisms underlying the anti-fatigue effects of these substances are currently unclear. In the present study, we analyzed the involvement of the olfactory system in the mechanisms underlying this effect. We identified the human olfactory receptors activated by Hex-Hex Mix, and evaluated whether activation of these olfactory receptors by a newly developed odorant elicited a similar anti-fatigue effect to Hex-Hex Mix. We assessed anti-fatigue effects with behavioral tests, and 17 healthy males performed the 2-back test as a fatigue-inducing task with or without exposure to the new odorant. Immediately before and after the task, participants performed a cognitive task to evaluate their level of mental fatigue. We found that the difference value of the correct response rate on the cognitive task in the evaluation session was significantly different between in the odorant condition and in the without-odorant condition during the fatigue-inducing session suggesting that the new odorant may improve performance in the fatigue-inducing condition. The results indicated that the new odorant activates the same olfactory receptors as Hex-Hex Mix, which has been reported to induce anti-fatigue effects. Our findings suggest that the olfactory receptors in the olfactory system may be involved in the attenuation of fatigue.

摘要

一些先天气味诱发反应的神经回路的组成部分最近已经被阐明。嗅觉受体检测到的气味信息从嗅球传递到皮质杏仁核,在那里控制着生理和情绪状态,如吸引或回避。因此,特定嗅觉受体的激活可以引起生理和/或心理状态的变化。在这里,我们研究了已经报道具有抗疲劳作用的混合气味 Hex-Hex。疲劳是一种常见的状态,通常与过度劳累和心理压力有关。已经开发了各种抗疲劳治疗方法,包括补充剂和气味剂。然而,这些物质抗疲劳作用的机制目前尚不清楚。在本研究中,我们分析了嗅觉系统在这种作用机制中的参与。我们确定了混合气味 Hex-Hex 激活的人类嗅觉受体,并评估了由一种新开发的气味剂激活这些嗅觉受体是否会产生与混合气味 Hex-Hex 相似的抗疲劳作用。我们使用行为测试评估抗疲劳效果,17 名健康男性在有或没有暴露于新气味剂的情况下进行 2 回测试作为疲劳诱导任务。在任务之前和之后,参与者执行认知任务以评估他们的精神疲劳水平。我们发现,在评估会话中,认知任务的正确响应率的差值在气味条件下与疲劳诱导会话中的无气味条件下显著不同,这表明新气味剂可能改善疲劳诱导条件下的表现。结果表明,新气味剂激活了与混合气味 Hex-Hex 相同的嗅觉受体,混合气味 Hex-Hex 已被报道具有抗疲劳作用。我们的研究结果表明,嗅觉系统中的嗅觉受体可能参与了疲劳的缓解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f280/5875884/d813939c1514/pone.0195263.g001.jpg

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