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用于眼部屏障形成细胞单层组织工程的生物材料。

Biomaterials used for tissue engineering of barrier-forming cell monolayers in the eye.

作者信息

Sasseville Samantha, Karami Samira, Tchatchouang Ange, Charpentier Pascale, Anney Princia, Gobert Delphine, Proulx Stéphanie

机构信息

Axe Médecine Régénératrice, Hôpital du Saint-Sacrement, Centre de Recherche en Organogénèse Expérimentale de l'Université Laval/LOEX; Centre de Recherche du Centre Hospitalier Universitaire (CHU) de Québec-Université Laval, Québec, QC, Canada.

Département d'ophtalmologie et d'oto-rhino-laryngologie-chirurgie cervico-faciale, Faculté de Médecine, Université Laval, Québec, QC, Canada.

出版信息

Front Bioeng Biotechnol. 2023 Sep 27;11:1269385. doi: 10.3389/fbioe.2023.1269385. eCollection 2023.

Abstract

Cell monolayers that form a barrier between two structures play an important role for the maintenance of tissue functionality. In the anterior portion of the eye, the corneal endothelium forms a barrier that controls fluid exchange between the aqueous humor of the anterior chamber and the corneal stroma. This monolayer is central in the pathogenesis of Fuchs endothelial corneal dystrophy (FECD). FECD is a common corneal disease, in which corneal endothelial cells deposit extracellular matrix that increases the thickness of its basal membrane (Descemet's membrane), and forms excrescences (guttae). With time, there is a decrease in endothelial cell density that generates vision loss. Transplantation of a monolayer of healthy corneal endothelial cells on a Descemet membrane substitute could become an interesting alternative for the treatment of this pathology. In the back of the eye, the retinal pigment epithelium (RPE) forms the blood-retinal barrier, controlling fluid exchange between the choriocapillaris and the photoreceptors of the outer retina. In the retinal disease dry age-related macular degeneration (dry AMD), deposits (drusen) form between the RPE and its basal membrane (Bruch's membrane). These deposits hinder fluid exchange, resulting in progressive RPE cell death, which in turn generates photoreceptor cell death, and vision loss. Transplantation of a RPE monolayer on a Bruch's membrane/choroidal stromal substitute to replace the RPE before photoreceptor cell death could become a treatment alternative for this eye disease. This review will present the different biomaterials that are proposed for the engineering of a monolayer of corneal endothelium for the treatment of FECD, and a RPE monolayer for the treatment of dry AMD.

摘要

在两个结构之间形成屏障的细胞单层对于维持组织功能起着重要作用。在眼睛的前部,角膜内皮形成一个屏障,控制前房房水与角膜基质之间的液体交换。这个单层在富克斯内皮性角膜营养不良(FECD)的发病机制中起核心作用。FECD是一种常见的角膜疾病,其中角膜内皮细胞沉积细胞外基质,增加其基底膜(Descemet膜)的厚度,并形成赘生物(角膜小滴)。随着时间的推移,内皮细胞密度降低,导致视力丧失。在Descemet膜替代物上移植单层健康角膜内皮细胞可能成为治疗这种疾病的一个有趣选择。在眼睛的后部,视网膜色素上皮(RPE)形成血视网膜屏障,控制脉络膜毛细血管与视网膜外层光感受器之间的液体交换。在视网膜疾病干性年龄相关性黄斑变性(干性AMD)中,沉积物(玻璃膜疣)在RPE与其基底膜(Bruch膜)之间形成。这些沉积物阻碍液体交换,导致RPE细胞逐渐死亡,进而导致光感受器细胞死亡和视力丧失。在光感受器细胞死亡之前,在Bruch膜/脉络膜基质替代物上移植RPE单层以替代RPE可能成为这种眼病的一种治疗选择。本综述将介绍为治疗FECD而设计角膜内皮单层以及为治疗干性AMD而设计RPE单层所提出的不同生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/555a/10569698/3f239a066088/fbioe-11-1269385-g001.jpg

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