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活体人眼中的急性眼压升高:模型描述和眼内压升高后的初始细胞反应。

Acute ocular hypertension in the living human eye: Model description and initial cellular responses to elevated intraocular pressure.

机构信息

Department of Ophthalmology and Visual Sciences, Heersink School of Medicine, University of Alabama at Birmingham, Birmingham, AL, USA; Department of Neurobiology, Heersink School of Medicine, University of Alabama at Birmingham, Birmingham, AL, USA.

Department of Neurobiology, Heersink School of Medicine, University of Alabama at Birmingham, Birmingham, AL, USA.

出版信息

Vision Res. 2024 Oct;223:108465. doi: 10.1016/j.visres.2024.108465. Epub 2024 Aug 22.

Abstract

This initial methods study presents the initial immunohistochemical and transcriptomic changes in the optic nerve head and retina from three research-consented brain-dead organ donors following prolonged and transient intraocular pressure (IOP) elevation. In this initial study, research-consented brain-dead organ donors were exposed to unilateral elevation of IOP for 7.5 h (Donor 1), 30 h (Donor 2), and 1 h (Donor 3) prior to organ procurement. Optic nerve tissue and retinal tissue was obtained following organ procurement for immunohistological and transcriptomic analysis. Optic nerve sections in Donor 1 exposed to 7.5-hours of unilateral sub-ischemic IOP elevation demonstrated higher levels of protein expression of the astrocytic marker, glial fibrillary acidic protein (GFAP), within the lamina cribrosa with greatest expression inferior temporally in the treated eye compared to control. Spatial transcriptomic analysis performed on optic nerve head tissues from Donor 2 exposed to 30 h of unilateral IOP elevation demonstrated differential transcription of mRNA across laminar and scleral regions. Immunohistochemistry of retinal sections from Donor 2 exhibited higher GFAP and IBA1 expression in the treated eye compared with control, but this was not observed in Donor 3, which was exposed to only 1-hour of IOP elevation. While there were no differences in GFAP protein expression in the retina following the 1-hour IOP elevation in Donor 3, there were higher levels of transcription of GFAP in the inner nuclear layer, and CD44 in the retinal ganglion cell layer, indicative of astrocytic and Müller glial reactivity as well as an early inflammatory response, respectively. We found that transcriptomic differences can be observed across treated and control eyes following unilateral elevation of IOP in brain dead organ donors. The continued development of this model affords the unique opportunity to define the acute mechanotranscriptomic response of the optic nerve head, evaluate the injury and repair mechanisms in the retina in response to IOP elevation, and enable correlation of in vivo imaging and functional testing with ex vivo cellular responses for the first time in the living human eye.

摘要

本初步方法研究介绍了在三位经过研究同意的脑死亡器官供体中,在眼内压(IOP)升高持续时间和短暂时间后,视神经头和视网膜的初始免疫组织化学和转录组变化。在这项初步研究中,研究同意的脑死亡器官供体在器官获取前分别暴露于单侧 IOP 升高 7.5 小时(供体 1)、30 小时(供体 2)和 1 小时(供体 3)。在器官获取后,获得视神经组织和视网膜组织进行免疫组织化学和转录组分析。在供体 1 中,暴露于 7.5 小时单侧亚缺血性 IOP 升高的视神经节段显示,在治疗眼中,与对照相比,在下方颞侧的节细胞层内,星形胶质细胞标志物胶质纤维酸性蛋白(GFAP)的蛋白表达水平更高。对供体 2 暴露于 30 小时单侧 IOP 升高的视神经头组织进行空间转录组分析表明,mRNA 在层状和巩膜区域的转录存在差异。供体 2 的视网膜节段的免疫组织化学显示,与对照相比,治疗眼的 GFAP 和 IBA1 表达更高,但在仅暴露于 1 小时 IOP 升高的供体 3 中未观察到这种情况。在供体 3 中,视网膜中 GFAP 蛋白表达在 1 小时 IOP 升高后没有差异,但在内核层中 GFAP 的转录水平更高,在视网膜神经节细胞层中 CD44 的转录水平更高,分别表明星形胶质细胞和 Müller 胶质细胞的反应以及早期炎症反应。我们发现,在脑死亡器官供体单侧 IOP 升高后,治疗眼和对照眼之间可以观察到转录组差异。该模型的持续发展为定义视神经头的急性机械转录反应提供了独特的机会,评估视网膜对 IOP 升高的损伤和修复机制,并首次在活体人眼中实现了体内成像和功能测试与体外细胞反应的相关性。

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