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Informative three-dimensional survey of cell/tissue architectures in thick paraffin sections by simple low-vacuum scanning electron microscopy

机译:简单的低真空扫描电子显微镜,厚石蜡切片中细胞/组织架构的信息三维调查

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Recent advances in bio-medical research, such as the production of regenerative organs from stem cells, require three-dimensional analysis of cell/tissue architectures. High-resolution imaging by electron microscopy is the best way to elucidate complex cell/tissue architectures, but the conventional method requires a skillful and time-consuming preparation. The present study developed a three-dimensional survey method for assessing cell/tissue architectures in 30-μm-thick paraffin sections by taking advantage of backscattered electron imaging in a low-vacuum scanning electron microscope. As a result, in the kidney, the podocytes and their processes were clearly observed to cover the glomerulus. The 30?μm thickness facilitated an investigation on face-side (instead of sectioned) images of the epithelium and endothelium, which are rarely seen within conventional thin sections. In the testis, differentiated spermatozoa were three-dimensionally assembled in the middle of the seminiferous tubule. Further application to vascular-injury thrombus formation revealed the distinctive networks of fibrin fibres and platelets, capturing the erythrocytes into the thrombus. The four-segmented BSE detector provided topographic bird’s-eye images that allowed a three-dimensional understanding of the cell/tissue architectures at the electron-microscopic level. Here, we describe the precise procedures of this imaging method and provide representative electron micrographs of normal rat organs, experimental thrombus formation, and three-dimensionally cultured tumour cells.
机译:生物医学研究的最新进展,如从干细胞的再生器官的生产需要细胞/组织架构的三维分析。电子显微镜的高分辨率成像是阐明复杂电池/组织架构的最佳方法,但传统方法需要熟练且耗时的准备。本研究通过利用低真空扫描电子显微镜中的反向散射电子成像,开发了一种三维测量方法,用于评估30-μm-厚的石蜡切片中的细胞/组织架构。结果,在肾脏中,清楚地观察到龟粒细胞及其过程以覆盖肾小球。 30?μm厚度促进了对上皮和内皮的面部侧(代替分成的)图像的研究,其在常规薄部分内很少看到。在睾丸中,将分化的精子在半血管小管中三维组装。进一步应用于血管损伤的血栓形成揭示了纤维蛋白纤维和血小板的独特网络,将红细胞捕获到血栓中。四分段的BSE检测器提供了允许在电子微观水平下对电池/组织架构进行三维理解的地形鸟瞰图。这里,我们描述了该成像方法的精确程序,并提供了正常大鼠器官,实验血栓形成和三维培养的肿瘤细胞的代表性电子显微照片。

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