Huang Zong-Qi, Li Xiao-Qin, Wang Yin-Di, Li Jia-Yi, Tian Yu-He, Liu Yong-Min, Si Jun-Qiang
Department of Physiology, Shihezi University Medical College, Shihezi, 832000, People's Republic of China.
Department of Neurology, the Fifth Affiliated Hospital of Sun Yat-sen University, Zhuhai, 519000, People's Republic of China.
J Pain Res. 2025 Sep 9;18:4687-4698. doi: 10.2147/JPR.S533508. eCollection 2025.
Pain is a common symptom of many diseases and seriously affects the quality of life. Circadian rhythm is the regular, cyclical physiological, biochemical, and behavioral changes that occur within a 24-hour period in biological organisms, primarily regulated by clock genes. Pain sensitivity may have circadian rhythms, with clock genes likely influencing this pain-related rhythmicity. Therefore, restoring normal circadian rhythms and regulating the expression of clock genes are regarded as viable strategies to combat the development of pain. First, this review elucidates the core operational mechanisms of clock genes. Second, it also discusses the relationship among multiple types of pain and clock genes, such as sciatic nerve injury, inflammatory pain, chemotherapy-induced neuropathic pain, headache, the pain of Restless Legs Syndrome and fibromyalgia. Third, it presents the pain treatment and pain management strategies based on the current research on circadian rhythms. Exploring the role of circadian rhythm in pain can help increase our understanding of pain and have significant clinical implications for pain patients.
疼痛是许多疾病的常见症状,严重影响生活质量。昼夜节律是生物体内在24小时周期内发生的有规律、周期性的生理、生化和行为变化,主要受生物钟基因调控。疼痛敏感性可能具有昼夜节律,生物钟基因可能影响这种与疼痛相关的节律性。因此,恢复正常的昼夜节律和调节生物钟基因的表达被视为对抗疼痛发展的可行策略。首先,本综述阐明了生物钟基因的核心运作机制。其次,还讨论了多种类型疼痛与生物钟基因之间的关系,如坐骨神经损伤、炎性疼痛、化疗引起的神经性疼痛、头痛、不宁腿综合征疼痛和纤维肌痛。第三,基于目前对昼夜节律的研究,提出了疼痛治疗和疼痛管理策略。探索昼夜节律在疼痛中的作用有助于增进我们对疼痛的理解,并对疼痛患者具有重要的临床意义。