Lu Wenhan, Wang Yu, Hu Wei, Lin Xinyi, Tong Xiaoyu, Tian Yi, Chen Yuning, Wang Yicong, Xiao Yan, Yang Hongfang, Feng Yi, Sun Xinghuai
Department of Ophthalmology & Visual Science, Eye & ENT Hospital, Shanghai Medical College, Fudan University, Shanghai, 200031, China.
NHC Key Laboratory of Myopia and Related Eye Diseases, Shanghai Key Laboratory of Visual Impairment and Restoration, Chinese Academy of Medical Sciences, Fudan University, Shanghai, 200031, China.
Acta Neuropathol Commun. 2025 Apr 5;13(1):70. doi: 10.1186/s40478-025-01974-5.
Acute ocular hypertension (AOH), a major cause of progressive irreversible vision loss, showed significant retinal ganglion cell (RGC) degeneration as well as selective RGC vulnerability upon functional tests, yet the underlyding mechanisms remain incompletely understood. Here, we report the activation of transient receptor potential ankyrin 1 (TRPA1), a mechanosensitive ion channel on RGCs under AOH by RT-qPCR, Western blot, immunofluorescent, flow cytometry and calcium imaging tests. Downstream CaMKII/CREB pathways were evaluated, showing significantly elevated phospho-CaMKII and down-regulated phospho-CREB1 under AOH. Further, by applying a modified whole-brain clearing method, the region-specific RGC axonal damage among lateral geniculate nuclei (LGN) subregions were adopted to detect the involvement of TRPA1 on selective RGC vulnerability. Together with tissue-specific knock-out or channel inhibition test, the exacerbation of TRPA1 on RGC degeneration as well as selective injury tendency under AOH was confirmed. In virtue of our modified whole-brain clearing method, our data confirmed the innovational method to study the mechanisms behind selective vulnerability of neuronal cells, and in the meantime revealed the potential therapeutic opportunity of targeting TRPA1 for patients suffering from AOH attack.
急性高眼压(AOH)是进行性不可逆视力丧失的主要原因,在功能测试中显示出明显的视网膜神经节细胞(RGC)变性以及选择性RGC易损性,但其潜在机制仍未完全了解。在此,我们通过RT-qPCR、蛋白质免疫印迹、免疫荧光、流式细胞术和钙成像测试报告了AOH条件下RGC上的机械敏感离子通道——瞬时受体电位锚蛋白1(TRPA1)的激活情况。评估了下游CaMKII/CREB信号通路,结果显示在AOH条件下磷酸化CaMKII显著升高,而磷酸化CREB1下调。此外,通过应用改良的全脑清除方法,利用外侧膝状体(LGN)亚区域间区域特异性RGC轴突损伤来检测TRPA1在选择性RGC易损性中的作用。结合组织特异性基因敲除或通道抑制试验,证实了AOH条件下TRPA1对RGC变性以及选择性损伤倾向的加剧作用。凭借我们改良的全脑清除方法,我们的数据证实了该创新方法可用于研究神经元细胞选择性易损性背后的机制,同时揭示了针对AOH发作患者靶向TRPA1的潜在治疗机会。