Department of Ophthalmology, Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing.
Department of Ophthalmology, Affiliated hospital of Nanjing University of Chinese Medicine, Nanjing.
Eur J Histochem. 2023 Feb 6;67(1):3634. doi: 10.4081/ejh.2023.3634.
The purpose of the study was to investigate the effect of artificial light with different spectral composition and distribution on axial growth in guinea pigs. Three-week-old guinea pigs were randomly assigned to groups exposed to natural light, low color temperature light-emitting diode (LED) light, two full spectrum artificial lights (E light and Julia light) and blue light filtered light with the same intensity. Axial lengths of guinea pigs' eyes were measured by A-scan ultrasonography prior to the experiment and every 2 weeks during the experiment. After light exposure for 12 weeks, retinal dopamine (DA), dihydroxy-phenylacetic acid (DOPAC) levels and DOPAC/DA ratio were analyzed by high-pressure liquid chromatography electrochemical detection and retinal histological structure was observed. Retinal melanopsin expression was detected using Western blot and immunohistochemistry. After exposed to different kinds of light with different spectrum for 4 weeks, the axial lengths of guinea pigs' eyes in LED group and Julia light group were significantly longer than those of natural light group. After 6 weeks, the axial lengths in LED light group were significantly longer than those of E light group and blue light filtered group. The difference between axial lengths in E light group and Julia light group showed statistical significance after 8 weeks (p<0.05). After 12 weeks of light exposure, the comparison of retinal DOPAC/DA ratio and melanopsin expression in each group was consistent with that of axial length. In guinea pigs, continuous full spectrum artificial light with no peak or valley can inhibit axial elongation via retinal dopaminergic and melanopsin system.
本研究旨在探讨不同光谱组成和分布的人工光对豚鼠眼轴生长的影响。3 周龄豚鼠随机分为 6 组,分别暴露于自然光、低色温发光二极管(LED)光、两种全光谱人工光(E 光和 Julia 光)和具有相同强度的蓝光滤过光。在实验前和实验期间每 2 周通过 A 型超声测量豚鼠眼轴长度。光暴露 12 周后,通过高效液相色谱电化学检测分析视网膜多巴胺(DA)、二羟苯乙酸(DOPAC)水平和 DOPAC/DA 比值,并观察视网膜组织学结构。使用 Western blot 和免疫组织化学检测视网膜黑视素表达。暴露于不同光谱的不同类型光 4 周后,LED 组和 Julia 光组的豚鼠眼轴长度明显长于自然光组。6 周后,LED 光组的眼轴长度明显长于 E 光组和蓝光滤过组。8 周后,E 光组和 Julia 光组的眼轴长度差异具有统计学意义(p<0.05)。光暴露 12 周后,各组视网膜 DOPAC/DA 比值和黑视素表达的比较与眼轴长度一致。在豚鼠中,无峰或谷的连续全光谱人工光可通过视网膜多巴胺能和黑视素系统抑制眼轴伸长。