首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Dim Light at Night Exposure Induces Cold Hyperalgesia and Mechanical Allodynia in Male Mice
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Dim Light at Night Exposure Induces Cold Hyperalgesia and Mechanical Allodynia in Male Mice

机译:昏暗的灯光在夜间曝光诱导雄性小鼠的冷痛觉过敏和机械异常性病

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摘要

The growing presence of artificial lighting across the globe presents a number of challenges to human and ecological health despite its societal benefits. Exposure to artificial light at night, a seemingly innocuous aspect of modern life, disrupts behavior and physiological functions. Specifically, light at night induces neuroinflammation, which is implicated in neuropathic and nociceptive pain states, including hyperalgesia and allodynia. Because of its influence on neuroinflammation, we investigated the effects of dim light at night exposure on pain responsiveness in male mice. In this study, mice exposed to four days of dim (5 lux) light at night exhibited cold hyperalgesia. Further, after 28 days of exposure, mice exhibited both cold hyperalgesia and mechanical allodynia. No heat/hot hyperalgesia was observed in this experiment. Altered nociception in mice exposed to dim light at night was concurrent with upregulated interleukin-6 and nerve growth factor mRNA expression in the medulla and elevated l-opioid receptor mRNA expression in the periaqueductal gray region of the brain. The current results support the relationship between disrupted circadian rhythms and altered pain sensitivity. In summary, we observed that dim light at night induces cold hyperalgesia and mechanical allodynia, potentially through elevated neuroinflammation and dysregulation of the endogenous opioid system. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:尽管其社会效益,全球人工照明的越来越多的人对人类和生态健康存在许多挑战。在晚上接触人造光,现代生活中看似无害的方面,破坏了行为和生理功能。具体而言,夜间的光诱导神经炎炎症,其涉及神经疗法和伤害性疼痛状态,包括痛觉过敏和异常性。由于其对神经炎性的影响,我们调查了昏暗的光在夜间暴露于雄性小鼠疼痛反应性的影响。在这项研究中,晚上暴露于4天的小鼠昏暗的暗淡(5勒克斯)灯表现出冷痛觉过敏。此外,在暴露28天后,小鼠表现出冷痛觉过敏和机械异常性疼痛。在该实验中没有观察到热/热痛觉过敏。在夜间暴露于昏暗的暗光的小鼠中的改变的伤害症在脑内髓质灰色区域中髓质中的上调性白细胞介素-6和神经生长因子mRNA表达并发。目前的结果支持中断的昼夜节奏之间的关系和改变疼痛敏感性。总之,我们观察到夜间昏暗的光线诱导冷痛觉过敏和机械异常性疼痛,可能通过升高的神经炎症和内源性阿片类药物系统的失调。 (c)2020年度IBRO。 elsevier有限公司出版。保留所有权利。

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