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在暴露于重组胰蛋白酶后,小鼠星形胶质细胞层的机械应变增加。

Mechanical strain in the mouse astrocytic lamina increases after exposure to recombinant trypsin.

机构信息

Glaucoma Center of Excellence, Johns Hopkins Wilmer Eye Institute, United States; Department of Ophthalmology, School of Medicine, Johns Hopkins University, Baltimore, MD 21218, United States.

Glaucoma Center of Excellence, Johns Hopkins Wilmer Eye Institute, United States.

出版信息

Acta Biomater. 2023 Jun;163:312-325. doi: 10.1016/j.actbio.2022.02.023. Epub 2022 Feb 20.

Abstract

The responses of astrocytes in the optic nerve head (ONH) to mechanical and biochemical stimuli are important to understanding the degeneration of retinal ganglion cell axons in glaucoma. The ONH in glaucoma is vulnerable to stress produced by the intraocular pressure (IOP). Notably, after three days of elevated IOP in a mouse model, the junctions between the astrocytic processes and the peripapillary sclera were altered and the structural compliance of the ONH increased. In order to simulate this aspect of glaucomatous remodeling, explanted mouse eyes were treated with TrypLE, a recombinant trypsin enzyme. Treatment with TrypLE caused the periphery of the astrocytic lamina to contract radially by 0.044 ± 0.038. Transmission electron microscopy showed that TrypLE caused a separation of the end-feet of the astrocyte processes from the basement membrane at the junction with the sclera. Inflation testing after treatment with TrypLE caused an increased strain response in the astrocytic lamina compared to the strain response before treatment. The greatest increase was in the radial Green-Lagrange strain, E = 0.028 ± 0.009, which increased by 340%. The alterations in the microstructure and in the strain response of the astrocytic lamina reported in mouse experimental glaucoma were partially reproduced by experimental treatment of mouse eyes with TrypLE. The results herein suggest that separation of junctions between the astrocyte processes and the sclera may be instrumental in increasing the structural compliance of the ONH after a period of elevated IOP. STATEMENT OF SIGNIFICANCE: Astrocytes of the optic nerve of the eye spread out from edge to edge across the optic nerve in a region referred to as the astrocytic lamina. In an experimental model of glaucoma caused by elevated eye-pressure, there is disruption of the connections between astrocytes and the edge of the astrocytic lamina. We caused a similar event in the lamina by incubating explanted mouse eyes with an enzyme. Disruption of the astrocyte connections to the edge of their tissue caused the tissue to stretch more when we increased the eye-pressure, compared to the control tissue. This work is the first on the tissue of the optic nerve to demonstrate the importance of cell connections in preventing the over-stretching of the astrocytic lamina.

摘要

视神经头部(ONH)星形胶质细胞对机械和生化刺激的反应对于理解青光眼中原发性节细胞轴突变性很重要。青光眼的 ONH 易受到眼内压(IOP)产生的压力的影响。值得注意的是,在小鼠模型中 IOP 升高三天后,星形胶质细胞突起与视盘周围巩膜之间的连接发生改变,ONH 的结构顺应性增加。为了模拟青光眼重塑的这一方面,离体的小鼠眼球接受了 TrypLE(一种重组胰蛋白酶酶)的处理。TrypLE 的处理导致星形胶质细胞层的外围以 0.044 ± 0.038 的幅度向心收缩。透射电子显微镜显示,TrypLE 导致星形胶质细胞突起的末端与巩膜交界处的基底膜分离。TrypLE 处理后进行充气测试,与处理前相比,星形胶质细胞层的应变响应增加。最大的增加是在径向格林-拉格朗日应变 E = 0.028 ± 0.009,增加了 340%。在小鼠实验性青光眼中报道的星形胶质细胞层的微观结构和应变响应的改变部分通过用 TrypLE 处理离体的小鼠眼球来重现。本文的结果表明,在一段时间的眼压升高后,星形胶质细胞突起与巩膜之间的连接分离可能有助于增加 ONH 的结构顺应性。

意义声明

眼睛视神经的星形胶质细胞从边缘到边缘在一个称为星形胶质细胞层的区域内扩散。在由眼内压升高引起的实验性青光眼模型中,星形胶质细胞与星形胶质细胞层边缘之间的连接被破坏。我们通过用酶孵育离体的小鼠眼球在层中引起了类似的事件。与对照组织相比,当我们增加眼内压时,破坏星形胶质细胞与组织边缘的连接会导致组织拉伸更多。这项工作是视神经组织中首次证明细胞连接在防止星形胶质细胞层过度拉伸方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b16/9391529/afdf160eaba1/nihms-1786399-f0001.jpg

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