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A Method for Lineage Tracing of Corneal Cells Using Multi-color Fluorescent Reporter Mice

机译:一种使用多色荧光报告基因小鼠追踪角膜细胞谱系的方法

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摘要

Lineage tracing experiments define the origin, fate and behavior of cells in a specific tissue or organism. This technique has been successfully applied for many decades, revealing seminal findings in developmental biology. More recently, it was adopted by stem cell biologists to identify and track different stem cell populations with minimal experimental intervention. The recent developments in mouse genetics, the availability of a large number of mouse strains, and the advancements in fluorescent microscopy allow the straightforward design of powerful lineage tracing systems for various tissues with basic expertise, using commercially available tools. We have recently taken advantage of this powerful methodology to explore the origin and fate of stem cells at the ocular surface using R26R-Confetti mouse. This model offers a multi-color genetic system, for the expression of 4 fluorescent genes in a random manner. Here we describe the principles of this methodology and provide an adaptable protocol for designing lineage tracing experiments; specifically for the corneal epithelium as well as for other tissues.
机译:谱系追踪实验定义了特定组织或生物体中细胞的起源,命运和行为。这项技术已经成功应用了数十年,揭示了发育生物学的开创性发现。最近,干细胞生物学家采用了它,以最少的实验干预来识别和跟踪不同的干细胞群体。小鼠遗传学的最新发展,大量小鼠品系的可获得性以及荧光显微技术的进步,使得可以使用市售工具直接设计强大的谱系追踪系统,用于具有各种基本知识的各种组织。我们最近利用这一强大的方法,使用R26R-Confetti小鼠探索了眼表干细胞的起源和命运。该模型提供了一种多色遗传系统,用于以随机方式表达4个荧光基因。在这里,我们描述了这种方法的原理,并为设计谱系追踪实验提供了一种可适应的协议。专门用于角膜上皮以及其他组织。

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