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高通量 3D 全器官清除后成像:重新观察斑马鱼睾丸。

High-resolution 3D imaging of whole organ after clearing: taking a new look at the zebrafish testis.

机构信息

INRA, UR1037 Fish Physiology and Genomics, F-35000 Rennes, France.

Tefor Core Facility, Paris-Saclay Institute of Neuroscience, CNRS, Université Paris-Saclay, 91190 Gif-sur-Yvette, France.

出版信息

Sci Rep. 2017 Feb 17;7:43012. doi: 10.1038/srep43012.

Abstract

Zebrafish testis has become a powerful model for reproductive biology of teleostean fishes and other vertebrates and encompasses multiple applications in applied and basic research. Many studies have focused on 2D images, which is time consuming and implies extrapolation of results. Three-dimensional imaging of whole organs recently became an important challenge to better understand their architecture and allow cell enumeration. Several protocols have thus been developed to enhance sample transparency, a limiting step for imaging large biological samples. However, none of these methods has been applied to the zebrafish testis. We tested five clearing protocols to determine if some of them could be applied with only small modifications to the testis. We compared clearing efficiency at both macroscopic and microscopic levels. CUBIC and PACT were suitable for an efficient transparency, an optimal optical penetration, the GFP fluorescence preservation and avoiding meaningful tissue deformation. Finally, we succeeded in whole testis 3D capture at a cellular resolution with both CUBIC and PACT, which will be valuable in a standard workflow to investigate the 3D architecture of the testis and its cellular content. This paves the way for further development of high content phenotyping studies in several fields including development, genetic or toxicology.

摘要

斑马鱼睾丸已成为研究硬骨鱼类和其他脊椎动物生殖生物学的强大模型,并在应用和基础研究中有多种应用。许多研究都集中在二维图像上,这既耗时又需要对结果进行推断。最近,对整个器官的三维成像成为更好地了解其结构并允许细胞计数的重要挑战。因此,已经开发了几种方案来增强样品的透明度,这是对大型生物样品进行成像的一个限制步骤。然而,这些方法都没有应用于斑马鱼睾丸。我们测试了五种透明化方案,以确定其中一些方案是否可以经过微小修改就应用于睾丸。我们在宏观和微观水平上比较了透明化效率。CUBIC 和 PACT 适用于有效的透明度、最佳的光学穿透性、GFP 荧光的保存以及避免有意义的组织变形。最后,我们成功地使用 CUBIC 和 PACT 以细胞分辨率捕获整个睾丸的 3D 图像,这将在研究睾丸的 3D 结构及其细胞内容的标准工作流程中具有重要价值。这为进一步开发包括发育、遗传或毒理学在内的多个领域的高通量表型研究铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8455/5314416/a82bfdbf8211/srep43012-f1.jpg

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