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人视网膜色素上皮细胞的容积重建揭示了特化的膜和细胞器的极化分布。

Volumetric Reconstruction of a Human Retinal Pigment Epithelial Cell Reveals Specialized Membranes and Polarized Distribution of Organelles.

机构信息

Department of Ophthalmology, Medical University of Vienna, Vienna, Austria.

Department of Ophthalmology and Visual Sciences, Heersink School of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, United States.

出版信息

Invest Ophthalmol Vis Sci. 2023 Dec 1;64(15):35. doi: 10.1167/iovs.64.15.35.

Abstract

PURPOSE

Despite the centrality of the retinal pigment epithelium (RPE) in vision and retinopathy our picture of RPE morphology is incomplete. With a volumetric reconstruction of human RPE ultrastructure, we aim to characterize major membranous features including apical processes and their interactions with photoreceptor outer segments, basolateral infoldings, and the distribution of intracellular organelles.

METHODS

A parafoveal retinal sample was acquired from a 21-year-old male organ donor. With serial block-face scanning electron microscopy, a tissue volume from the inner-outer segment junction to basal RPE was captured. Surface membranes and complete internal ultrastructure of an individual RPE cell were achieved with a combination of manual and automated segmentation methods.

RESULTS

In one RPE cell, apical processes constitute 69% of the total cell surface area, through a dense network of over 3000 terminal branches. Single processes contact several photoreceptors. Basolateral infoldings facing the choriocapillaris resemble elongated filopodia and comprise 22% of the cell surface area. Membranous tubules and sacs of endoplasmic reticulum represent 20% of the cell body volume. A dense basal layer of mitochondria extends apically to partly overlap electron-dense pigment granules. Pores in the nuclear envelope form a distinct pattern of rows aligned with chromatin.

CONCLUSIONS

Specialized membranes at the apical and basal side of the RPE cell body involved in intercellular uptake and transport represent over 90% of the total surface area. Together with the polarized distribution of organelles within the cell body, these findings are relevant for retinal clinical imaging, therapeutic approaches, and disease pathomechanisms.

摘要

目的

尽管视网膜色素上皮 (RPE) 在视觉和视网膜病变中起着核心作用,但我们对 RPE 形态的认识并不完整。通过对人 RPE 超微结构的体积重建,我们旨在描述主要的膜状特征,包括顶突及其与光感受器外节的相互作用、基底侧内陷以及细胞内细胞器的分布。

方法

从一名 21 岁的男性器官捐献者获得中心凹旁视网膜样本。通过连续块面扫描电子显微镜,捕获从内-外节交界处到基底 RPE 的组织体积。通过手动和自动分割方法的组合,实现了单个 RPE 细胞的表面膜和完整的内部超微结构。

结果

在一个 RPE 细胞中,顶突构成总细胞表面积的 69%,通过超过 3000 个末端分支的密集网络。单个突起与几个光感受器接触。面向脉络膜毛细血管的基底侧内陷类似于伸长的丝状伪足,占细胞表面积的 22%。内质网的膜小管和囊泡占细胞体体积的 20%。一层密集的顶端线粒体基底层向上延伸,部分与电子致密的色素颗粒重叠。核膜中的孔形成与染色质对齐的明显行状图案。

结论

RPE 细胞体的顶侧和底侧的专门膜参与细胞间摄取和转运,占总表面积的 90%以上。与细胞器在细胞体内的极化分布一起,这些发现与视网膜临床成像、治疗方法和疾病发病机制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a9b/10746928/c3e8ff40d3de/iovs-64-15-35-f001.jpg

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