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Understanding the three-dimensional world from two-dimensional immunofluorescent adjacent sections

机译:从二维免疫荧光相邻部分了解三维世界

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Visualizing tissue structures in three-dimensions (3D) is crucial to understanding normal and pathological phenomena. However, staining and imaging of thick sections and whole mount samples can be challenging. For decades, researchers have serially sectioned large tissues and painstakingly reconstructed the 3D volume. Advances in automation, from sectioning to alignment, now greatly accelerate the process. In addition, immunofluorescent staining methods allow multiple antigens to be simultaneously detected and analyzed volumetrically. The objective was to incorporate multi-channel immunofluorescent staining and automation in 3D reconstruction of serial sections for volumetric analysis. Paraffin-embedded samples were sectioned manually but were processed, stained, imaged and aligned in an automated fashion. Reconstructed stacks were quantitatively analyzed in 3D. By combining automated immunofluorescent staining and tried-and-true methods of reconstructing adjacent sections, we were able to visualize, in detail, not only the geometric structures of the sample but also the presence and interactions of multiple proteins and molecules of interest within their 3D environment. Advances in technology and software algorithms have significantly expedited the 3D reconstruction of serial sections. Automated, multi-antigen immunofluorescent staining will significantly broaden the range and complexity of scientific questions that can be answered with this methodology.Keywords: Automation, serial section, three-dimension reconstruction, volumetric analysis
机译:可视化三维结构(3D)对于理解正常和病理现象至关重要。但是,对厚切片和整个样本进行染色和成像可能具有挑战性。数十年来,研究人员已连续切片大型组织并精心地重建了3D体积。从切片到对齐的自动化进展现在大大加快了该过程。另外,免疫荧光染色方法允许同时检测和定量分析多种抗原。目的是将多通道免疫荧光染色和自动化技术整合到用于体积分析的系列切片的3D重建中。将石蜡包埋的样品手动切片,但以自动方式进行处理,染色,成像和对齐。重建后的堆叠以3D形式进行了定量分析。通过结合使用自动免疫荧光染色和重建相邻切片的可靠方法,我们不仅能够详细可视化样品的几何结构,而且还能在其3D范围内直观地观察多种蛋白质和目标分子的存在和相互作用环境。技术和软件算法的进步极大地加快了连续切片的3D重建。自动化的多抗原免疫荧光染色将大大拓宽可以用这种方法回答的科学问题的范围和复杂性。关键词:自动化,连续切片,三维重建,体积分析

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