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染料辅助式内界膜剥除术后内界膜的超微结构。

Ultrastructure of the membrana limitans interna after dye-assisted membrane peeling.

机构信息

Department of Ophthalmology, Electron Microscopy Center, University Hospital Jena, Jena, Germany.

出版信息

Ophthalmologica. 2011;226(4):228-33. doi: 10.1159/000331218. Epub 2011 Sep 1.

Abstract

The purpose of this study was to investigate the ultrastructure of the membrana limitans interna (internal limiting membrane, ILM) and to evaluate alterations to the retinal cell layers after membrane peeling with vital dyes. Twenty-five patients (25 eyes) who underwent macular hole surgery were included, whereby 12 indocyanine green (ICG)- and 13 brilliant blue G (BBG)-stained ILM were analyzed using light, transmission electron and scanning electron microscopy. Retinal cell fragments on the ILM were identified in both groups using immunohistochemistry. Comparing ICG- and BBG-stained membranes, larger cellular fragments were observed at a higher frequency in the BBG group. Thereby, the findings indicate that ICG permits an enhanced separation of the ILM from the underlying retina with less mechanical destruction. A possible explanation might be seen in the known photosensitivity of ICG, which induces a stiffening and shrinkage of the ILM but also generates retinal toxic metabolites.

摘要

本研究旨在探讨内界膜(ILM)的超微结构,并评估使用活细胞染料进行膜剥离后对视网膜细胞层的影响。共纳入 25 例(25 只眼)接受黄斑裂孔手术的患者,其中 12 只眼使用吲哚菁绿(ICG)和 13 只眼使用 brilliant blue G(BBG)染色的 ILM 分别通过光镜、透射电镜和扫描电镜进行了分析。两组均采用免疫组化法识别 ILM 上的视网膜细胞碎片。与 ICG 染色的膜相比,BBG 组中观察到更大的细胞碎片的频率更高。因此,研究结果表明,ICG 可更有效地将 ILM 与下方的视网膜分离,且机械破坏更小。这可能与 ICG 的已知光敏感性有关,ICG 可引起 ILM 的僵硬和收缩,同时还会产生视网膜毒性代谢物。

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