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Quantitative imaging of cell dynamics in mouse embryos using light-sheet microscopy

机译:使用光片显微镜对小鼠胚胎中的细胞动力学进行定量成像

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摘要

Single/selective-plane illumination, or light-sheet, systems offer several advantages over other fluorescence microscopy methods for live, 3D microscopy. These systems are valuable for studying embryonic development in several animal systems, such as Drosophila, C. elegans and zebrafish. The geometry of the light path in this form of microscopy requires the sample to be accessible from multiple sides and fixed in place so that it can be rotated around a single axis. Popular methods for mounting include hanging the specimen from a pin or embedding it in 1-2% agarose. These methods can be particularly problematic for certain samples, such as post-implantation mouse embryos, that expand significantly in size and are very delicate and sensitive to mounting. To overcome the current limitations and to establish a robust strategy for long-term (24 h) time-lapse imaging of E6.5-8.5 mouse embryos with light-sheet microscopy, we developed and tested a method using hollow agarose cylinders designed to accommodate for embryonic growth, yet provide boundaries to minimize tissue drift and enable imaging in multiple orientations. Here, we report the first 24-h time-lapse sequences of post-implantation mouse embryo development with light-sheet microscopy. We demonstrate that light-sheet imaging can provide both quantitative data for tracking changes in morphogenesis and reveal new insights into mouse embryogenesis. Although we have used this approach for imaging mouse embryos, it can be extended to imaging other types of embryos as well as tissue explants.
机译:单/选择性平面照明或光片系统相对于实时3D显微镜的其他荧光显微镜方法具有多个优势。这些系统对于研究几种动物系统(如果蝇,秀丽隐杆线虫和斑马鱼)的胚胎发育非常有价值。在这种显微镜形式下,光路的几何形状要求样品可以从多个侧面进入并固定在适当的位置,以便可以绕单个轴旋转。流行的安装方法包括将标本悬挂在大头针上或嵌入1-2%的琼脂糖中。这些方法对于某些样本(例如植入后的小鼠胚胎)尤其成问题,这些样本的大小会显着扩大并且非常脆弱并且对安装敏感。为克服当前的局限性,并建立一种使用光片显微镜对E6.5-8.5小鼠胚胎进行长期(24 h)延时成像的强大策略,我们开发并测试了一种使用空心琼脂糖瓶的方法,该方法旨在适应用于胚胎生长,但提供了边界以最大程度地减少组织漂移并实现多种方向的成像。在这里,我们用光片显微镜报告植入后小鼠胚胎发育的第一个24小时延时序列。我们证明,光片成像可以提供跟踪形态发生变化的定量数据,并揭示对小鼠胚胎发生的新见解。尽管我们已经使用这种方法对小鼠胚胎进行成像,但是它可以扩展到对其他类型的胚胎以及组织外植体进行成像。

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