Overview of Innovative Mouse Models for Imaging Neuroinflammation

Q1 Agricultural and Biological Sciences
Céline Caravagna, Alexandre Jaouën, Franck Debarbieux, Geneviève Rougon
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引用次数: 1

Abstract

Neuroinflammation demands a comprehensive appraisal in situ to gain in-depth knowledge on the roles of particular cells and molecules and their potential roles in therapy. Because of the lack of appropriate tools, direct visualization of cells has been poorly investigated up to the present. In this context, reporter mice expressing cell-specific fluorescent proteins, combined with multiphoton microscopy, provide a window into cellular processes in living animals. In addition, the ability to collect multiple fluorescent colors from the same sample makes in vivo microscopy uniquely useful for characterizing many parameters from the same area, supporting powerful correlative analyses. Here, we present an overview of the advantages and limitations of this approach, with the purpose of providing insight into the neuroinflammation field. We also provide a review of existing fluorescent mouse models and describe how these models have been used in studies of neuroinflammation. Finally, the potential for developing advanced genetic tools and imaging resources is discussed. © 2016 by John Wiley & Sons, Inc.

神经炎症成像小鼠创新模型综述
神经炎症需要全面的原位评估,以深入了解特定细胞和分子的作用及其在治疗中的潜在作用。由于缺乏适当的工具,细胞的直接可视化研究一直很差。在这种情况下,表达细胞特异性荧光蛋白的报告小鼠,结合多光子显微镜,为活体动物的细胞过程提供了一个窗口。此外,从同一样品中收集多种荧光颜色的能力使得体内显微镜对表征来自同一区域的许多参数非常有用,支持强大的相关分析。在这里,我们概述了这种方法的优点和局限性,目的是为神经炎症领域提供见解。我们还提供了现有的荧光小鼠模型的回顾,并描述了这些模型如何在神经炎症的研究中使用。最后,讨论了开发先进遗传工具和成像资源的潜力。©2016 by John Wiley &儿子,Inc。
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来源期刊
Current protocols in mouse biology
Current protocols in mouse biology Agricultural and Biological Sciences-Animal Science and Zoology
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期刊介绍: Sound and reproducible laboratory methods are the foundation of scientific discovery. Yet, all too often, nuances that are critical for an experiment''s success are not captured in the primary literature but exist only as part of a lab''s oral tradition. The aim of Current Protocols in Mouse Biology is to provide the clearest, most detailed and reliable step-by-step instructions for protocols involving the use of mice in biomedical research. Written by experts in the field and extensively edited to our exacting standards, the protocols include all of the information necessary to complete an experiment in the laboratory—introduction, materials lists with supplier information, detailed step-by-step procedures with helpful annotations, recipes for reagents and solutions, illustrative figures and information-packed tables. Each article also provides invaluable discussions of background information, applications of the methods, important assumptions, key parameters, time considerations, and tips to help avoid common pitfalls and troubleshoot experiments. Furthermore, Current Protocols in Mouse Biology content is thoughtfully organized by topic for optimal usage and to maximize contextual knowledge. Quarterly issues allow Current Protocols to constantly evolve to keep pace with the newest discoveries and developments. Current Protocols in Mouse Biology brings together resources in mouse biology and genetics and provides a mouse protocol resource that covers all aspects of mouse biology. Current Protocols in Mouse Biology also permits optimization of mouse model usage, which is significantly impacted by both cost and ethical constraints. Optimal and standardized mouse protocols ultimately reduce experimental variability and reduce the number of animals used in mouse experiments.
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