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一种在斑马鱼体内进行自动化高分辨率筛选的方法,用于鉴定髓鞘形成的化学调节剂。

An automated high-resolution in vivo screen in zebrafish to identify chemical regulators of myelination.

机构信息

Centre for Discovery Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom.

United Kingdom Zebrafish screening facility, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Elife. 2018 Jul 6;7:e35136. doi: 10.7554/eLife.35136.

Abstract

Myelinating oligodendrocytes are essential for central nervous system (CNS) formation and function. Their disruption is implicated in numerous neurodevelopmental, neuropsychiatric and neurodegenerative disorders. However, recent studies have indicated that oligodendrocytes may be tractable for treatment of disease. In recent years, zebrafish have become well established for the study of myelinating oligodendrocyte biology and drug discovery in vivo. Here, by automating the delivery of zebrafish larvae to a spinning disk confocal microscope, we were able to automate high-resolution imaging of myelinating oligodendrocytes in vivo. From there, we developed an image analysis pipeline that facilitated a screen of compounds with epigenetic and post-translational targets for their effects on regulating myelinating oligodendrocyte number. This screen identified novel compounds that strongly promote myelinating oligodendrocyte formation in vivo. Our imaging platform and analysis pipeline is flexible and can be employed for high-resolution imaging-based screens of broad interest using zebrafish.

摘要

少突胶质细胞对于中枢神经系统(CNS)的形成和功能至关重要。它们的破坏与许多神经发育、神经精神和神经退行性疾病有关。然而,最近的研究表明,少突胶质细胞可能是治疗疾病的可处理靶点。近年来,斑马鱼已成为研究髓鞘形成少突胶质细胞生物学和体内药物发现的成熟模型。在这里,通过自动将斑马鱼幼虫输送到旋转盘共聚焦显微镜,我们能够自动对体内髓鞘形成少突胶质细胞进行高分辨率成像。在此基础上,我们开发了一种图像分析管道,该管道可用于筛选具有表观遗传和翻译后靶点的化合物,以观察它们对调节髓鞘形成少突胶质细胞数量的影响。该筛选确定了一些新的化合物,它们可在体内强烈促进髓鞘形成少突胶质细胞的形成。我们的成像平台和分析管道具有灵活性,可以使用斑马鱼对广泛关注的基于高分辨率成像的筛选进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e8/6056238/2d09c0e70b8a/elife-35136-fig1.jpg

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