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细胞色素P450-1b1的缺失增加了小鼠视网膜投射中压力诱导轴突病的易感性。

Absence of Cytochrome P450-1b1 Increases Susceptibility of Pressure-Induced Axonopathy in the Murine Retinal Projection.

作者信息

Amirmokhtari Naseem, Foresi Brian D, Dewan Shiv S, Bouhenni Rachida A, Smith Matthew A

机构信息

Department of Pharmaceutical Sciences, Northeast Ohio Medical University, Rootstown, OH, United States.

Integrated Pharmaceutical Medicine Graduate Program, Northeast Ohio Medical University, Rootstown, OH, United States.

出版信息

Front Cell Dev Biol. 2021 Mar 5;9:636321. doi: 10.3389/fcell.2021.636321. eCollection 2021.

Abstract

Mutations in the cytochrome P450-1B1 (Cyp1b1) gene is a common genetic predisposition associated with various human glaucomas, most prominently in primary congenital glaucoma (PCG). The role of Cyp1b1 in the eye is largely unknown, however, its absence appears to drive the maldevelopment of anterior eye structures responsible for aqueous fluid drainage in murine models. Nevertheless, vision loss in glaucoma ultimately results from the structural and functional loss of retinal ganglion cells (RGCs). Cyp1b1's influence in the development and support of retinal ganglion cell structure and function under normal conditions or during stress, such as elevated ocular pressure; the most common risk factor in glaucoma, remains grossly unknown. Thus, to determine the role of Cyp1b1 in normal retinal projection development we first assessed the strucutrual integrity of RGCs in the retina, optic nerve, and superior colliculus in un-manipulated (naïve) Cyp1b1-knockout (Cyp1b1) mice. In addition, in a separate cohort of Cyp1b1 and wildtype mice, we elevated and maintained intraocular pressure (IOP) at glaucomatous levels for 5-weeks, after which we compared RGC density, node of Ranvier morphology, and axonal transport between the genotypes. Our results demonstrate that naïve Cyp1b1 mice develop an anatomically intact retinal projection absent of overt glaucomatous pathology. Following pressure elevation, Cyp1b1 accelerated degradation of axonal transport from the retina to the superior colliculus and altered morphology of the nodes of Ranvier and adjacent paranodes in the optic nerves. Together this data suggests the absence Cyp1b1 expression alone is insufficient to drive murine glaucomatous pathology, however, may increase the vulnerability of retinal axons to disease relevant elevations in IOP.

摘要

细胞色素P450 - 1B1(Cyp1b1)基因突变是一种常见的遗传易感性因素,与多种人类青光眼相关,在原发性先天性青光眼(PCG)中最为显著。然而,Cyp1b1在眼睛中的作用在很大程度上尚不清楚,不过在小鼠模型中,它的缺失似乎会导致负责房水引流的眼前部结构发育异常。尽管如此,青光眼导致的视力丧失最终是由视网膜神经节细胞(RGCs)的结构和功能丧失引起的。在正常条件下或在应激状态下,如青光眼最常见的危险因素眼压升高时,Cyp1b1对视网膜神经节细胞结构和功能的发育及维持的影响仍然完全未知。因此,为了确定Cyp1b1在正常视网膜投射发育中的作用,我们首先评估了未经过处理(未干预)的Cyp1b1基因敲除(Cyp1b1)小鼠视网膜、视神经和上丘中RGCs的结构完整性。此外,在另一组Cyp1b1和野生型小鼠中,我们将眼压升高并维持在青光眼水平5周,之后比较了不同基因型之间的RGC密度、郎飞结形态和轴突运输情况。我们的结果表明,未经过处理的Cyp1b1小鼠形成了一个解剖结构完整的视网膜投射,没有明显的青光眼病理特征。眼压升高后,Cyp1b1加速了从视网膜到上丘的轴突运输的降解,并改变了视神经中郎飞结及其相邻结间体的形态。这些数据共同表明,单独缺乏Cyp1b1表达不足以引发小鼠青光眼病理改变,然而,可能会增加视网膜轴突对与疾病相关的眼压升高的易感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4497/7973214/b33d43909e9c/fcell-09-636321-g001.jpg

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