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利用基于实验室的 X 射线显微镜和石蜡介导的对比增强,对小鼠肾脏进行无损细胞水平的 3D 观察。

Nondestructive cellular-level 3D observation of mouse kidney using laboratory-based X-ray microscopy with paraffin-mediated contrast enhancement.

机构信息

X-Ray Research Laboratory Rigaku Corporation, 3-9-12 Matsubara-cho, Akishima, Tokyo, 196-8666, Japan.

New Market Development Office, Rigaku Corporation, 3-9-12 Matsubara-cho, Akishima, Tokyo, 196-8666, Japan.

出版信息

Sci Rep. 2022 Jun 8;12(1):9436. doi: 10.1038/s41598-022-13394-9.

Abstract

For three-dimensional observation of unstained bio-specimens using X-ray microscopy with computed tomography (CT), one main problem has been low contrast in X-ray absorption. Here we introduce paraffin-mediated contrast enhancement to visualize biopsy samples of mouse kidney using a laboratory-based X-tray microscope. Unlike conventional heavy-atom staining, paraffin-mediated contrast enhancement uses solid paraffin as a negative contrast medium to replace water in the sample. The medium replacement from water to paraffin effectively lowers the absorption of low-energy X-rays by the medium, which eventually enhances the absorption contrast between the medium and tissue. In this work, paraffin-mediated contrast enhancement with 8 keV laboratory X-rays was used to visualize cylindrical renal biopsies with diameters of about 0.5 mm. As a result, reconstructed CT images from 19.4 h of data collection achieved cellular-level resolutions in all directions, which provided 3D structures of renal corpuscles from a normal mouse and from a disease model mouse. These two structures with and without disease allowed a volumetric analysis showing substantial volume differences in glomerular subregions. Notably, this nondestructive method presents CT opacities reflecting elemental composition and density of unstained tissues, thereby allowing more unbiased interpretation on their biological structures.

摘要

使用具有计算机断层扫描(CT)功能的 X 射线显微镜对未染色的生物标本进行三维观察,一个主要问题是 X 射线吸收的对比度低。在这里,我们引入了石蜡介导的对比增强,使用基于实验室的 X 射线显微镜来可视化小鼠肾脏的活检样本。与传统的重原子染色不同,石蜡介导的对比增强使用固体石蜡作为负对比介质来代替样品中的水。从中等密度的水介质到低吸收系数的石蜡介质的替换,有效地降低了介质对低能 X 射线的吸收,最终增强了介质和组织之间的吸收对比。在这项工作中,使用 8keV 的实验室 X 射线进行了石蜡介导的对比增强,以可视化直径约为 0.5mm 的圆柱形肾活检样本。结果,从 19.4 小时的数据采集重建的 CT 图像在所有方向上都达到了细胞级分辨率,提供了来自正常小鼠和疾病模型小鼠的肾小体的 3D 结构。这两个有和没有疾病的结构允许进行体积分析,显示肾小球亚区的体积差异很大。值得注意的是,这种非破坏性方法呈现出反映未染色组织元素组成和密度的 CT 不透明度,从而允许对其生物结构进行更客观的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ca2/9177607/3a4d66b8d345/41598_2022_13394_Fig1_HTML.jpg

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