The School of Genetics and Microbiology, Smurfit Institute of Genetics, Trinity College Dublin, Dublin 2, D02VF25 Dublin, Ireland.
The Research Foundation, Royal Victoria Eye and Ear Hospital, Dublin 2, D02XK51 Dublin, Ireland.
Int J Mol Sci. 2024 Aug 15;25(16):8876. doi: 10.3390/ijms25168876.
Glaucoma, a leading cause of blindness, is a multifactorial condition that leads to progressive loss of retinal ganglion cells (RGCs) and vision. Therapeutic interventions based on reducing ocular hypertension are not always successful. Emerging features of glaucoma include mitochondrial dysfunction and oxidative stress. In the current study, NDI1-based gene therapy, which improves mitochondrial function and reduces reactive oxygen species, was delivered intraocularly via an adeno-associated viral vector (AAV). This AAV-NDI1 therapy protected RGCs from cell death in treated (1552.4 ± 994.0 RGCs/mm) versus control eyes (1184.4 ± 978.4 RGCs/mm, < 0.05) in aged DBA/2J mice, a murine model of glaucoma. The photonegative responses (PhNRs) of RGCs were also improved in treated (6.4 ± 3.3 µV) versus control eyes (5.0 ± 3.1 µV, < 0.05) in these mice. AAV-NDI1 also provided benefits in glaucomatous human lamina cribrosa (LC) cells by significantly increasing basal and maximal oxygen consumption rates and ATP production in these cells. Similarly, NDI1 therapy significantly protected HO-insulted primary porcine LC cells from oxidative stress. This study highlights the potential utility of NDI1 therapies and the benefits of improving mitochondrial function in the treatment of glaucoma.
青光眼是导致失明的主要原因之一,是一种多因素疾病,可导致视网膜神经节细胞(RGCs)和视力进行性丧失。基于降低眼内压的治疗干预措施并不总是成功的。青光眼的新特征包括线粒体功能障碍和氧化应激。在本研究中,通过腺相关病毒载体(AAV)眼内递送电镜下可见的 NDI1 基因治疗,改善了线粒体功能并减少了活性氧物种。这种 AAV-NDI1 治疗可保护 RGCs 免受衰老 DBA/2J 小鼠(青光眼的一种小鼠模型)治疗眼(1552.4 ± 994.0 RGCs/mm)与对照眼(1184.4 ± 978.4 RGCs/mm, < 0.05)中的细胞死亡。在这些小鼠中,RGCs 的光阴性反应(PhNRs)也在治疗眼(6.4 ± 3.3 µV)中得到改善,而对照眼(5.0 ± 3.1 µV, < 0.05)。AAV-NDI1 还通过显著增加这些细胞的基础和最大耗氧量和 ATP 产生,为青光眼患者的人小梁细胞(LC)提供了益处。同样,NDI1 治疗可显著保护 HO 损伤的原代猪 LC 细胞免受氧化应激。本研究强调了 NDI1 治疗的潜在效用和改善线粒体功能在治疗青光眼方面的益处。