Wang Yi, Zhang Wei, Xu Guozheng, Shi Changwei, Wang Xiang, Qu Jianfeng, Wang Hongmei, Liu Chunhua
Department of Ophthalmology, The Second Affiliated Hospital of Shandong First Medical University, Taian, Shandong, 271000, China.
School of Medicine, Southeast University, Nanjing, 210009, China.
Heliyon. 2023 Jun 23;9(7):e17583. doi: 10.1016/j.heliyon.2023.e17583. eCollection 2023 Jul.
Retinal ganglion cell (RGC) damages are common in glaucoma, causing atrophy of the optic papilla, visual field damage, and visual loss. Transient receptor potential vanilloid 4 (TRPV4) is significantly expressed in the eyeball and is sensitive to mechanical and osmotic pressure. However, the specific role and mechanism of TRPV4 in glaucoma and RGC progression remain unclear. TRPV4 expression was detected in RGCs under different pressure culture conditions. We also explored the pressure effect on TRPV4 expression and the role and mechanism behind the functional regulation of RGCs. Immunofluorescence staining, western blotting, and TUNEL were utilized in this study. Our results established that TRPV4 was expressed in RGCs. TRPV4 expression was decreased at 40 mmHg and 60 mmHg, and the expression of BAX at 40 mmHg, 60 mmHg. Additionally, the expression of caspase 9 protein increased at 40 mmHg with the pressure increase compared with the conventional culture group. TUNEL staining revealed that the apoptosis rate of RGCs was elevated at 40 mmHg and 60 mmHg, compared with the traditional culture group. Therefore, the expression of BAX and caspase 9 increased, along with the apoptosis rate of RGCs compared with the control group. However, after TRPV4 antagonist treatment, the expression of BAX and caspase 9 decreased, and the apoptosis rate of RGCs decreased. Thus, TRPV4 may affect the mitochondrial apoptosis pathway, such as BAX and caspase 9, leading to the apoptosis of RGCs. The antagonists of TRPV4 could provide a new idea for clinically treating acute glaucoma.
视网膜神经节细胞(RGC)损伤在青光眼患者中很常见,可导致视乳头萎缩、视野损害和视力丧失。瞬时受体电位香草酸亚型4(TRPV4)在眼球中大量表达,且对机械压力和渗透压敏感。然而,TRPV4在青光眼和RGC病变中的具体作用及机制仍不清楚。本研究检测了不同压力培养条件下RGC中TRPV4的表达情况。我们还探究了压力对TRPV4表达的影响以及RGC功能调节背后的作用和机制。本研究采用了免疫荧光染色、蛋白质免疫印迹法和TUNEL法。我们的研究结果证实,TRPV4在RGC中表达。在40 mmHg和60 mmHg压力下,TRPV4表达降低,在40 mmHg和60 mmHg压力下BAX表达也降低。此外,与传统培养组相比,在40 mmHg压力下随着压力增加,caspase 9蛋白表达增加。TUNEL染色显示,与传统培养组相比,在40 mmHg和60 mmHg压力下RGC的凋亡率升高。因此,与对照组相比,BAX和caspase 9的表达增加,同时RGC的凋亡率也升高。然而,经TRPV4拮抗剂处理后,BAX和caspase 9的表达降低,RGC的凋亡率也降低。因此,TRPV4可能影响线粒体凋亡途径,如BAX和caspase 9,从而导致RGC凋亡。TRPV4拮抗剂可为急性青光眼的临床治疗提供新思路。