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青光眼的昼夜节律紊乱:原因、后果及应对措施

Circadian Disruption in Glaucoma: Causes, Consequences, and Countermeasures.

作者信息

Gubin Denis, Malishevskaya Tatyana, Weinert Dietmar, Zakharova Ekaterina, Astakhov Sergey, Cornelissen Germaine

机构信息

Department of Biology, Tyumen Medical University, 625023 Tyumen, Russia.

Laboratory for Chronobiology and Chronomedicine, Research Institute of Biomedicine and Biomedical Technologies, Tyumen Medical University, 625023 Tyumen, Russia.

出版信息

Front Biosci (Landmark Ed). 2024 Dec 3;29(12):410. doi: 10.31083/j.fbl2912410.

Abstract

This review explores the intricate relationship between glaucoma and circadian rhythm disturbances. As a principal organ for photic signal reception and transduction, the eye plays a pivotal role in coordinating the body's circadian rhythms through specialized retinal ganglion cells (RGCs), particularly intrinsically photosensitive RGCs (ipRGCs). These cells are critical in transmitting light signals to the suprachiasmatic nucleus (SCN), the central circadian clock that synchronizes physiological processes to the 24-hour light-dark cycle. The review delves into the central circadian body clock, highlighting the importance of the retino-hypothalamic tract in conveying light information from the eyes to the SCN. It underscores the role of melanopsin in ipRGCs in absorbing light and initiating biochemical reactions that culminate in the synchronization of the SCN's firing patterns with the external environment. Furthermore, the review discusses local circadian rhythms within the eye, such as those affecting photoreceptor sensitivity, corneal thickness, and intraocular fluid outflow. It emphasizes the potential of optical coherence tomography (OCT) in studying structural losses of RGCs in glaucoma and the associated circadian rhythm disruption. Glaucomatous retinal damage is identified as a cause of circadian disruption, with mechanisms including oxidative stress, neuroinflammation, and direct damage to RGCs. The consequences of such disruption are complex, affecting systemic and local circadian rhythms, sleep patterns, mood, and metabolism. Countermeasures, with implications for glaucoma management, are proposed that focus on strategies to improve circadian health through balanced melatonin timing, daylight exposure, and potential chronotherapeutic approaches. The review calls for further research to elucidate the mechanisms linking glaucoma and circadian disruption and to develop effective interventions to address this critical aspect of the disease.

摘要

本综述探讨了青光眼与昼夜节律紊乱之间的复杂关系。眼睛作为光信号接收和转导的主要器官,通过特殊的视网膜神经节细胞(RGC),尤其是内在光敏性视网膜神经节细胞(ipRGC),在协调身体的昼夜节律方面发挥着关键作用。这些细胞在将光信号传递到视交叉上核(SCN)方面至关重要,视交叉上核是将生理过程与24小时明暗周期同步的中央生物钟。该综述深入探讨了中央昼夜生物钟,强调了视网膜下丘脑束在将眼睛的光信息传递到视交叉上核中的重要性。它强调了ipRGC中黑素视蛋白在吸收光线并引发生化反应中的作用,这些反应最终使视交叉上核的放电模式与外部环境同步。此外,该综述还讨论了眼睛内部的局部昼夜节律,例如那些影响光感受器敏感性、角膜厚度和眼内液流出的节律。它强调了光学相干断层扫描(OCT)在研究青光眼患者视网膜神经节细胞的结构损失以及相关昼夜节律紊乱方面的潜力。青光眼性视网膜损伤被确定为昼夜节律紊乱的一个原因,其机制包括氧化应激、神经炎症和对视网膜神经节细胞的直接损伤。这种紊乱的后果很复杂,会影响全身和局部的昼夜节律、睡眠模式、情绪和新陈代谢。提出了对青光眼治疗有影响的应对措施,这些措施侧重于通过平衡褪黑素时间、日光暴露和潜在的时间治疗方法来改善昼夜节律健康的策略。该综述呼吁进行进一步研究,以阐明青光眼与昼夜节律紊乱之间的联系机制,并开发有效的干预措施来解决该疾病的这一关键方面。

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