眼科 ›› 2026, Vol. 35 ›› Issue (4): 337-343.doi: 10.13281/i.cnki.issn.1004-4469.2026.04.016

• 论著 • 上一篇    下一篇

瞬时生物力对小鼠视网膜神经节细胞数量影响的初步观察

邢鑫慧   朱玮   

  1. 青岛大学药学院,山东青岛 266071
  • 收稿日期:2026-04-24 出版日期:2026-07-25 发布日期:2026-07-25
  • 通讯作者: 朱玮,Email:wzhu@qdu.edu.cn
  • 基金资助:
    国家重点研发计划(2022YEF0132500);山东省优秀青年基金(ZR2022YQ72);山东省泰山学者计划(tsqn202103055);青岛市关键技术攻关及产业化示范类项目(23-1-4-xxgg-16-nsh)

Preliminary observation on the effects of instantaneous biomechanical forces on retinal ganglion cell numbers in mice

Xing Xinhui, Zhu Wei   

  1. Department of Pharmacology, School of Pharmacy, Qingdao University, Qingdao Shandong 266021, China
  • Received:2026-04-24 Online:2026-07-25 Published:2026-07-25
  • Contact: Zhu Wei, Email: wzhu@qdu.edu.cn
  • Supported by:
    National Key Research and Development Program (2022YEF0132500); Shandong Province Outstanding Youth Fund (ZR2022YQ72); Shandong Province Taishan Scholar Program (tsqn202103055); Qingdao City Key Technology Tackling and Industrialization Demonstration Project (23-1-4-xxgg-16-nsh)

摘要: 目的  探究瞬时生物力对视网膜神经节细胞(retinal ganglion cells,RGCs)的影响。设计  实验研究。研究对象  C57BL/6J小鼠35只。方法  将8周龄C57BL/6J小鼠随机分组(对照组、揉眼10天组、揉眼20天组、揉眼30天组)。每天给小鼠左眼涂抹3次红霉素眼膏,每次间隔4小时,诱导小鼠双前爪擦拭眼球而产生揉眼行为,模拟人类揉眼时产生的瞬时生物力。采用视频记录方式实时监测小鼠的揉眼次数;分别于揉眼10天、20天、30天后,分离小鼠视网膜,免疫荧光染色技术标记RGCs,定量分析视网膜外周、中间、中央区域的RGCs数量变化。主要指标  RGCs数量。结果  涂抹红霉素眼膏1小时后,小鼠揉左眼次数较对照增加6.23倍(P<0.0001),小鼠揉右眼次数较对照增加3.39倍(P<0.01)。视网膜外周区域,揉眼20天后左眼RGCs数量较对照减少8.3%(P<0.01),右眼RGC数量无显著变化(P>0.05);揉眼30天后左眼RGCs数量较对照减少11.7%(P<0.001),右眼RGCs数量较对照减少9.7%(P<0.01)。视网膜中间区域,揉眼30天后左眼RGCs数量较对照减少6.9%(P<0.05),右眼RGCs数量较对照有所减少,但无统计学差异(P>0.05)。视网膜中央区域,各时间点左、右眼RGCs数量均无显著变化。同一时间点,左、右眼同一区域RGCs数量均无明显差异。结论  长期揉眼导致小鼠RGCs数量减少,损伤呈现时间累积效应;相比于中央、中间区域,外周区域RGCs表现出更高的瞬时生物力波动易感性;低频揉眼对RGCs的损伤与高频揉眼无显著差异。

关键词: 揉眼, 瞬时生物力, 视网膜神经节细胞, 青光眼

Abstract: Objective  Investigate the effects of instantaneous biomechanical forces on retinal ganglion cells (RGCs). Design  Experimental research. Participants 35 C57BL/6J mice. Methods Eight-week-old C57BL/6J mice were randomly assigned to groups (control group, 10-day eye rubbing group, 20-day eye rubbing group, 30-day eye rubbing group). Erythromycin eye ointment was applied to the left eye of the mice three times daily at 4-hour intervals to induce the mice to rub their eyes with both forepaws, mimicking the transient biomechanical forces generated during human eye rubbing. The frequency of eye rubbing was continuously monitored using video recording. After 10, 20, and 30 days of eye rubbing, the retinas were isolated, and immunofluorescence staining was performed to label RGCs, followed by quantitative analysis of the changes in RGC numbers in the peripheral, intermediate, and central regions of the retina. Main Outcome Measures The number of RGCs. Results One hour after applying erythromycin eye ointment, the frequency of mice rubbing their left eyes increased by 6.23 times compared to the control (P<0.0001), and the frequency of rubbing their right eyes increased by 3.39 times compared to the control (P<0.01). In the peripheral retinal region, after 20 days of eye rubbing, the number of RGCs in the left eye decreased by 8.3% compared to the control (P<0.01), while the number of RGCs in the right eye showed no significant change (P>0.05); after 30 days of eye rubbing, the number of RGCs in the left eye decreased by 11.7% compared to the control (P<0.001), and the number of RGCs in the right eye decreased by 9.7% compared to the control (P<0.01). In the mid-peripheral retinal region, after 30 days of eye rubbing, the number of RGCs in the left eye decreased by 6.9% compared to the control (P<0.05), while the number of RGCs in the right eye showed a decrease compared to the control, but without statistical significance (P>0.05). In the central retinal region, the number of RGCs in both the left and right eyes showed no significant change at any time point. At the same time point, there was no obvious difference in the number of RGCs between the left and right eyes in the same retinal region. Conclusions Long-term eye rubbing leads to a reduction in the number of RGCs in mice, with damage showing a time-accumulated effect; compared to the central and intermediate regions, RGCs in the peripheral region exhibit higher susceptibility to instantaneous biomechanical fluctuations; low-frequency eye rubbing does not show a significant difference in RGC damage compared to high-frequency eye rubbing.

Key words: Rubbing, Transient mechanical stimuli, Retinal ganglion cells, Glaucoma