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用于大眼组织学和组织病理学制备的改良方案。

Improved protocol for histological and histopathological preparation of large eyes.

作者信息

Zhang Mingliang, Lima E Silva Raquel, Zhou Lingli, Hackett Sean F, Campochiaro Peter A, Shen Jikui

机构信息

Department of Ophthalmology, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

Tianjin Key Laboratory of Retinal Functions and Diseases, Tianjin Branch of National Clinical Research Center for Ocular Disease, Eye Institute and School of Optometry, Tianjin Medical University Eye Hospital, Tianjin, China.

出版信息

Microsc Res Tech. 2025 Jan;88(1):172-180. doi: 10.1002/jemt.24698. Epub 2024 Sep 5.

Abstract

The development of new treatments for ocular diseases often requires investigating eyes similar in size and structure to human eyes. Such studies are challenging because analyzing the histopathology of large, human-sized eyes can be technically difficult. In particular, obtaining high-quality frozen sections is almost impossible due to the formation of ice crystals in the vitreous, which causes crush artifacts during the procedures of section and post sectioning manipulations. Herein, we describe a new method that provides high-quality frozen sections for large eyes and demonstrate its usefulness in the eyes of rabbits, pigs, minipigs, monkeys, and humans. We observed that artifactual separation of the photoreceptors from the retinal pigment epithelium is minimized and photoreceptor morphology is preserved. This method can be highly beneficial for investigators seeking to translate new treatments for ocular disease into the clinic. RESEARCH HIGHLIGHTS: Histopathological analysis of large and human-sized eyes presents significant challenges, particularly in obtaining high-quality frozen sections. A multistep fixation followed by vitreous removal and replacement ensures better cryopreservation and embedding of large eyes, minimizing the morphological and structural retinal loss found in many studies. Our results demonstrate that a multistep fixation and cryopreservation method for large eyes in histopathology consistently minimizes the artifactual separation of photoreceptors from the retinal pigment epithelium, thereby preserving photoreceptor morphology and providing high-quality frozen sections. A new method providing high-quality sections is necessary and will be highly useful for investigators aiming to translate new treatments for ocular diseases into clinical applications.

摘要

眼部疾病新疗法的开发通常需要研究大小和结构与人类眼睛相似的眼睛。此类研究具有挑战性,因为分析大型、人类尺寸眼睛的组织病理学在技术上可能很困难。特别是,由于玻璃体中会形成冰晶,几乎不可能获得高质量的冷冻切片,这会在切片过程和切片后操作中导致挤压伪像。在此,我们描述了一种为大型眼睛提供高质量冷冻切片的新方法,并证明了其在兔、猪、小型猪、猴和人类眼睛中的实用性。我们观察到光感受器与视网膜色素上皮的人为分离最小化,并且光感受器形态得以保留。这种方法对于寻求将眼部疾病新疗法转化为临床应用的研究人员可能非常有益。研究亮点:对大型和人类尺寸眼睛进行组织病理学分析存在重大挑战,尤其是在获得高质量冷冻切片方面。多步骤固定后去除并替换玻璃体可确保更好地冷冻保存和包埋大型眼睛,最大限度减少许多研究中发现的视网膜形态和结构损失。我们的结果表明,组织病理学中用于大型眼睛的多步骤固定和冷冻保存方法始终能最大限度减少光感受器与视网膜色素上皮的人为分离,从而保留光感受器形态并提供高质量冷冻切片。一种提供高质量切片的新方法是必要的,对于旨在将眼部疾病新疗法转化为临床应用的研究人员将非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa94/11652816/ce53fc08a0c8/JEMT-88-172-g001.jpg

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