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通过 AAV 介导的基因传递选择性上调视网膜神经节细胞中的 SIRT1 表达可增加神经元细胞存活并减轻视神经炎相关的轴突脱髓鞘。

Selective Upregulation of SIRT1 Expression in Retinal Ganglion Cells by AAV-Mediated Gene Delivery Increases Neuronal Cell Survival and Alleviates Axon Demyelination Associated with Optic Neuritis.

机构信息

Department of Ophthalmology, University of Pennsylvania, Philadelphia, PA 19104, USA.

F. M. Kirby Center for Molecular Ophthalmology, Scheie Eye Institute, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA 19104, USA.

出版信息

Biomolecules. 2022 Jun 14;12(6):830. doi: 10.3390/biom12060830.

Abstract

Optic neuritis (ON), the most common ocular manifestation of multiple sclerosis, is an autoimmune inflammatory demyelinating disease also characterized by degeneration of retinal ganglion cells (RGCs) and their axons, which commonly leads to visual impairment despite attempted treatments. Although ON disease etiology is not known, changes in the redox system and exacerbated optic nerve inflammation play a major role in the pathogenesis of the disease. Silent information regulator 1 (sirtuin-1/SIRT1) is a ubiquitously expressed NAD-dependent deacetylase, which functions to reduce/prevent both oxidative stress and inflammation in various tissues. Non-specific upregulation of SIRT1 by pharmacologic and genetic approaches attenuates RGC loss in experimental ON. Herein, we hypothesized that targeted expression of SIRT1 selectively in RGCs using an adeno-associated virus (AAV) vector as a delivery vehicle is an effective approach to reducing neurodegeneration and preserving vision in ON. We tested this hypothesis through intravitreal injection of AAV7m8.SNCG.SIRT1, an AAV2-derived vector optimized for highly efficient SIRT1 transgene transfer and protein expression into RGCs in mice with experimental autoimmune encephalomyelitis (EAE), a model of multiple sclerosis that recapitulates optic neuritis RGC loss and axon demyelination. Our data show that EAE mice injected with a control vehicle exhibit progressive alteration of visual function reflected by decreasing optokinetic response (OKR) scores, whereas comparatively, AAV7m8.SNCG.SIRT1-injected EAE mice maintain higher OKR scores, suggesting that SIRT1 reduces the visual deficit imparted by EAE. Consistent with this, RGC survival determined by immunolabeling is increased and axon demyelination is decreased in the AAV7m8.SNCG.SIRT1 RGC-injected group of EAE mice compared to the mouse EAE counterpart injected with a vehicle or with control vector AAV7m8.SNCG.eGFP. However, immune cell infiltration of the optic nerve is not significantly different among all EAE groups of mice injected with either vehicle or AAV7m8.SNCG.SIRT1. We conclude that despite minimally affecting the inflammatory response in the optic nerve, AAV7m8-mediated SIRT1 transfer into RGCs has a neuroprotective potential against RGC loss, axon demyelination and vison deficits associated with EAE. Together, these data suggest that SIRT1 exerts direct effects on RGC survival and function.

摘要

视神经炎(ON)是多发性硬化症最常见的眼部表现,是一种自身免疫性炎症性脱髓鞘疾病,其特征还在于视网膜神经节细胞(RGC)及其轴突的变性,尽管进行了治疗,但通常仍会导致视力损害。尽管视神经炎的病因尚不清楚,但氧化还原系统的变化和视神经炎症的加剧在疾病的发病机制中起主要作用。沉默信息调节因子 1(sirtuin-1/SIRT1)是一种广泛表达的 NAD 依赖性去乙酰化酶,其功能是减少/预防各种组织中的氧化应激和炎症。通过药理学和遗传学方法非特异性地上调 SIRT1 可减轻实验性视神经炎中的 RGC 损失。在此,我们假设使用腺相关病毒(AAV)载体作为递送载体,靶向表达 SIRT1 可选择性地在 RGC 中,是减少神经变性和保护视神经炎中视力的有效方法。我们通过向实验性自身免疫性脑脊髓炎(EAE)小鼠的玻璃体内注射 AAV7m8.SNCG.SIRT1 来检验这一假设,AAV7m8.SNCG.SIRT1 是一种源自 AAV2 的载体,可优化高效 SIRT1 转基因转移和蛋白表达到 RGC 中,EAE 是多发性硬化症的模型,可重现视神经炎 RGC 损失和轴突脱髓鞘。我们的数据表明,用对照载体注射的 EAE 小鼠表现出视觉功能的进行性改变,这反映在 OKR 评分的降低,而相比之下,用 AAV7m8.SNCG.SIRT1 注射的 EAE 小鼠保持较高的 OKR 评分,这表明 SIRT1 减轻了 EAE 引起的视觉缺陷。与此一致,通过免疫标记确定的 RGC 存活在接受 AAV7m8.SNCG.SIRT1 注射的 EAE 小鼠的 RGC 注射组中增加,而在接受载体或对照载体 AAV7m8.SNCG.eGFP 注射的 EAE 小鼠的视神经脱髓鞘减少。然而,用载体或 AAV7m8.SNCG.SIRT1 注射的所有 EAE 组小鼠的视神经中的免疫细胞浸润没有明显差异。我们得出的结论是,尽管对视神经中的炎症反应影响最小,但 AAV7m8 介导的 SIRT1 转移到 RGC 中具有针对与 EAE 相关的 RGC 损失、轴突脱髓鞘和视力缺陷的神经保护潜力。总的来说,这些数据表明 SIRT1 对 RGC 的存活和功能有直接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fb0/9221096/e3aa8dcd130e/biomolecules-12-00830-g001.jpg

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