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一种新技术识别出灵长类动物中进入和离开施莱姆管的瓣膜样通道,这些通道与人类通道相似。

A Novel Technique Identifies Valve-Like Pathways Entering and Exiting Schlemm's Canal in Primates With Similarities to Human Pathways.

作者信息

Martin Elizabeth A, Johnstone Murray A

机构信息

Department of Ophthalmology, Indiana University School of Medicine, Indianapolis, IN, United States.

Department of Ophthalmology, University of Washington School of Medicine, Seattle, WA, United States.

出版信息

Front Cell Dev Biol. 2022 Jul 4;10:868029. doi: 10.3389/fcell.2022.868029. eCollection 2022.

Abstract

The aim of the study was 1) to describe a novel combination of techniques that permit immunohistochemistry imaging of Schlemm's canal inlet (SIV) and outlet (SOV) valve-like structures, 2) to identify tissue-level SIV adhesive relationships linking the trabecular meshwork (TM) to hinged collagen leaflets at the Schlemm's canal (SC) external wall, and 3) to determine whether the SIV lumen wall's adhesive vascular markers are similar to those of the SC inner wall endothelium. Anterior segments of 16 primates underwent immunohistochemistry (IHC) labeling. We perfused fluorescent microspheres into 12 of the eyes. Limbal tissues were divided into quadrants, viscoelastic introduced into SC, tissues fixed, immunohistochemistry performed, radial segments cut, tissues clarified, and confocal microscopy performed. Finally, we generated ImageJ 3D projections encompassing the TM, SC, and distal pathways. IHC imaging identified 3D relationships between SIV, collector channel ostia, collector channels (CC), SOV, and intrascleral channels. Imaging depth increased 176.9%, following clarification ( < 0.0001). Imaging demonstrated CD31, collagen type 1 and 4 in the walls of the SIV lumen and more distal pathways. In eight eyes, 384 segments were examined, 447 SIV identified, and 15.4% contained microspheres. Our technique's imaging depth permitted the identification of SIV linkage between the TM and SOV. We found comparable cell-cell adhesion molecules (CD31) and basement membrane components in the SC inner wall and SIV lumen walls. Recent OCT studies have suggested that SIV tensional relationships may control CC entrance dimensions that regulate distal resistance. Cellular adhesive properties sustain SIV tensional relationships. These SIV cell-cell and cell-basement membrane properties warrant further study because abnormalities could be a factor in the IOP elevation of glaucoma.

摘要

本研究的目的是

1)描述一种新型技术组合,该组合可对施莱姆管入口(SIV)和出口(SOV)瓣膜样结构进行免疫组织化学成像;2)识别将小梁网(TM)与施莱姆管(SC)外壁的铰链状胶原小叶相连的组织水平SIV黏附关系;3)确定SIV管腔壁的黏附性血管标志物是否与SC内壁内皮细胞的标志物相似。对16只灵长类动物的眼前段进行免疫组织化学(IHC)标记。我们向其中12只眼睛灌注了荧光微球。将角膜缘组织分成象限,向SC中注入黏弹性物质,固定组织,进行免疫组织化学,切割径向节段,使组织透明,并进行共聚焦显微镜检查。最后,我们生成了涵盖TM、SC和远端通路的ImageJ 3D投影。免疫组织化学成像确定了SIV、集合管开口、集合管(CC)、SOV和巩膜内通道之间的三维关系。在组织透明后,成像深度增加了176.9%(P<0.0001)。成像显示SIV管腔壁和更远端通路壁中有CD31、1型和4型胶原。在8只眼睛中,检查了384个节段,识别出447个SIV,其中15.4%含有微球。我们技术的成像深度能够识别TM和SOV之间的SIV连接。我们在SC内壁和SIV管腔壁中发现了类似的细胞间黏附分子(CD31)和基底膜成分。最近的光学相干断层扫描(OCT)研究表明,SIV的张力关系可能控制调节远端阻力的CC入口尺寸。细胞黏附特性维持SIV的张力关系。这些SIV的细胞间和细胞与基底膜特性值得进一步研究,因为异常情况可能是青光眼眼压升高的一个因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2663/9289287/6f4f3cff5865/fcell-10-868029-g001.jpg

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