Zhang Chenchen, Zhu Zhe, Zhao Jing, Li Yanxia, Zhang Zhaoying, Zheng Yajuan
Department of Ophthalmology, The Second Hospital of Jilin University, Changchun 130000, China.
Department of Ophthalmology, Eye Hospital of Shandong First Medical University, Shandong Eye Institute, Jinan 250000, China.
Sci Total Environ. 2023 Mar 1;862:160809. doi: 10.1016/j.scitotenv.2022.160809. Epub 2022 Dec 9.
The use of light-emitting diodes (LEDs) has increased considerably in the 21st century with humans living in a modern photoperiod with brighter nights and dimmer days. Prolonged exposure to LEDs, especially at night, is considered a new source of pollution because it may affect the synthesis and secretion of retinal melatonin and dopamine, resulting in negative impacts on retinal circadian clocks and potentially disrupting retinal circadian rhythms. The control of ocular refraction is believed to be related to retinal circadian rhythms. Moreover, the global prevalence of myopia has increased at an alarming rate in recent decades. The widespread use of LEDs and the rapid increase in the prevalence of myopia overlap, which is unlikely to be a coincidence. The connection among LEDs, retinal circadian rhythms, and refractive development is both fascinating and confusing. In this review, we aim to develop a systematic framework that includes LEDs, retinal circadian rhythms and refractive development. This paper summarizes the possible mechanisms by which LEDs may disrupt retinal circadian rhythms. We propose that prolonged exposure to LEDs may induce myopia by disrupting retinal circadian rhythms. Finally, we suggest several possible countermeasures to prevent LED interference on retinal circadian rhythms, with the hope of reducing the onset and progression of myopia.
在21世纪,随着人类生活在夜晚更明亮、白天更昏暗的现代光周期中,发光二极管(LED)的使用显著增加。长时间暴露于LED,尤其是在夜间,被认为是一种新的污染源,因为它可能影响视网膜褪黑素和多巴胺的合成与分泌,对视网膜生物钟产生负面影响,并可能扰乱视网膜昼夜节律。人们认为眼屈光的控制与视网膜昼夜节律有关。此外,近几十年来,全球近视患病率以惊人的速度上升。LED的广泛使用与近视患病率的迅速增加同时出现,这不太可能是巧合。LED、视网膜昼夜节律和屈光发育之间的联系既引人入胜又令人困惑。在本综述中,我们旨在建立一个包括LED、视网膜昼夜节律和屈光发育的系统框架。本文总结了LED可能扰乱视网膜昼夜节律的潜在机制。我们提出,长时间暴露于LED可能通过扰乱视网膜昼夜节律而诱发近视。最后,我们提出了几种可能的对策,以防止LED对视网膜昼夜节律的干扰,希望能减少近视的发生和发展。