首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Rigid Embedding of Fixed and Stained Whole Millimeter-Scale Specimens for Section-free 3D Histology by Micro-Computed Tomography
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Rigid Embedding of Fixed and Stained Whole Millimeter-Scale Specimens for Section-free 3D Histology by Micro-Computed Tomography

机译:通过微计算机断层扫描技术对无节段3D组织学的固定和染色完整毫米级标本进行刚性嵌入

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摘要

For over a hundred years, the histological study of tissues has been the gold standard for medical diagnosis because histology allows all cell types in every tissue to be identified and characterized. Our laboratory is actively working to make technological advances in X-ray micro-computed tomography (micro-CT) that will bring the diagnostic power of histology to the study of full tissue volumes at cellular resolution (i.e., an X-ray Histo-tomography modality). Toward this end, we have made targeted improvements to the sample preparation pipeline. One key optimization, and the focus of the present work, is a straightforward method for rigid embedding of fixed and stained millimeter-scale samples. Many of the published methods for sample immobilization and correlative micro-CT imaging rely on placing the samples in paraffin wax, agarose, or liquids such as alcohol. Our approach extends this work with custom procedures and the design of a 3-dimensional printable apparatus to embed the samples in an acrylic resin directly into polyimide tubing, which is relatively transparent to X-rays. Herein, sample preparation procedures are described for the samples from 0.5 to 10 mm in diameter, which would be suitable for whole zebrafish larvae and juveniles, or other animals and tissue samples of similar dimensions. As proof of concept, we have embedded the specimens from Danio, Drosophila, Daphnia, and a mouse embryo; representative images from 3-dimensional scans for three of these samples are shown. Importantly, our methodology leads to multiple benefits including rigid immobilization, long-term preservation of laboriously-created resources, and the ability to re-interrogate samples.
机译:一百多年来,组织的组织学研究一直是医学诊断的金标准,因为组织学可以识别和表征每个组织中的所有细胞类型。我们的实验室正在积极努力,以实现X射线计算机断层扫描(micro-CT)的技术进步,从而将组织学的诊断能力带入细胞分辨率下的全组织体积研究(例如,X射线组织断层扫描)方式)。为此,我们对样品制备流程进行了针对性的改进。一个关键的优化和当前工作的重点是一种直接固定和染色毫米级样本的刚性嵌入方法。许多公开的样品固定和相关微CT成像方法都依赖于将样品置于石蜡,琼脂糖或液体(如酒精)中。我们的方法通过定制程序和3维可打印设备的设计扩展了这项工作,该设备可将丙烯酸树脂中的样品直接嵌入到聚酰亚胺管中,该聚酰亚胺管对X射线相对透明。在此,描述了直径从0.5到10 mm的样品的样品制备程序,该程序适用于整个斑马鱼的幼虫和幼虫,或其他类似尺寸的动物和组织样品。作为概念的证明,我们嵌入了来自Danio,果蝇,水蚤和小鼠胚胎的标本。显示了其中三个样本的三维扫描的代表性图像。重要的是,我们的方法可带来多种好处,包括刚性固定,长期保存费力创建的资源以及重新审阅样本的能力。

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