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3D nanoscale imaging of the yeast, Schizosaccharomyces pombe, by full-field transmission X-ray microscopy at 5.4 keV

机译:通过5.4 keV的全场透射X射线显微镜对酵母,裂殖酵母进行3D纳米成像

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摘要

Three-dimensional (3D) nanoscale structures of the fission yeast, Schizosaccharomyces pombe, can be obtained by full-field transmission hard X-ray microscopy with 30 nm resolution using synchrotron radiation sources. Sample preparation is relatively simple and the samples are portable across various imaging environments, allowing for high-throughput sample screening. The yeast cells were fixed and double-stained with Reynold's lead citrate and uranyl acetate. We performed both absorption contrast and Zernike phase contrast imaging on these cells in order to test this method. The membranes, nucleus, and subcellular organelles of the cells were clearly visualized using absorption contrast mode. The X-ray images of the cells could be used to study the spatial distributions of the organelles in the cells. These results show unique structural information, demonstrating that hard X-ray microscopy is a complementary method for imaging and analyzing biological samples.
机译:裂变酵母粟酒裂殖酵母的三维(3D)纳米级结构可通过使用同步加速器辐射源以30 nm的分辨率进行全场透射硬X射线显微镜获得。样品制备相对简单,并且样品可在各种成像环境中携带,从而可以进行高通量样品筛选。将酵母细胞固定并用雷诺柠檬酸铅和乙酸铀酰双染色。为了测试该方法,我们对这些细胞进行了吸收对比和Zernike相衬成像。使用吸收对比模式可以清晰地看到细胞的膜,细胞核和亚细胞器。细胞的X射线图像可用于研究细胞中细胞器的空间分布。这些结果显示了独特的结构信息,表明硬X射线显微镜检查是成像和分析生物样品的补充方法。

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