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Serial block face-scanning electron microscopy: a method to study retinal degenerative phenotypes

机译:连续块面扫描电子显微镜:研究视网膜变性表型的方法

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摘要

Retinal degenerative conditions can vary in their clinical presentation and often present with subtle phenotypic features before the onset of clinically overt disease. To capture these isolated events that precipitate disease, large representative areas of the retina must be imaged at high resolution. Compared to light microscopic methods, traditional electron microscopy can provide images at sufficient resolution to detect subtle pathologic changes in the retina, but are limited to the area being surveyed. The advent of serial block face-scanning electron microscopy (SBFSEM) provides the resolution needed with the unprecedented advantage of imaging large volumes of retinal tissue. Furthermore, automation of SBF-SEM bypasses errors from manual sectioning and can produce reliable serial sections as thin as 25 nanometers. Moreover, the three-dimensional structures generated can highlight cellular connectivity and interactions in the retina and reveal pathological changes. Using SBF-SEM, we have identified subtle phenotypic features in mouse models of various human retinal dystrophies. This method will allow researchers to identify and monitor the time course of these pathologies. Here, we summarize the SBF-SEM methodology and its application to mouse models of retinal degeneration.
机译:视网膜退行性疾病的临床表现可能有所不同,在临床明显疾病发作之前通常表现出细微的表型特征。为了捕获这些诱发疾病的孤立事件,必须以高分辨率对视网膜的代表性区域进行成像。与光学显微镜相比,传统的电子显微镜可以提供足够分辨率的图像来检测视网膜的细微病理变化,但仅限于被调查的区域。串行块面扫描电子显微镜(SBFSEM)的出现提供了所需的分辨率,并且具有对大量视网膜组织进行成像的前所未有的优势。此外,SBF-SEM的自动化避免了手工切片带来的错误,并且可以产生可靠的串行切片,厚度仅为25纳米。此外,产生的三维结构可以突出视网膜中的细胞连通性和相互作用,并揭示病理变化。使用SBF-SEM,我们已经确定了各种人类视网膜营养不良的小鼠模型中的细微表型特征。这种方法将使研究人员能够识别和监控这些病理的时间过程。在这里,我们总结了SBF-SEM方法及其在视网膜变性小鼠模型中的应用。

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