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Nanoscale Imaging of Chemical Elements in Biomedicine

机译:生物医学中化学元素的纳米成像

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Imaging techniques based on transmission electron microscopy can elucidate the structure and function of macromolecular complexes in a cellular environment. In addition to providing contrast based on structure, electron microscopy combined with electron spectroscopy can also generate nanoscale contrast from endogenous chemical elements present in biomolecules, as well as from exogenous elements introduced into tissues and cells as imaging probes or as therapeutic drugs. These capabilities complement biomedical imaging used in diagnostics while also providing insight into fundamental cell biological processes. We have developed electron tomography (ET) techniques based on unconventional imaging modes in the electron microscope to map specific types of macromolecules within cellular compartments. ET is used to determine the three-dimensional structure from a series of two-dimensional projections acquired successively by tilting a specimen through a range of angles, and then by reconstructing the three-dimensional volume. We have focused on two approaches that combine ET with other imaging modes: energy filtered transmission electron microscopy (EFTEM) based on collection of inelastically scattered electrons, and scanning transmission electron microscopy (STEM) based on collection of elastically scattered electrons. EFTEM tomography provides 3D elemental mapping and STEM tomography provides 3D mapping of heavy atom clusters used to label specific macromolecular assemblies. These techniques are illustrated by EFTEM imaging of the subcellular nucleic acid distribution through measurement of the intrinsic marker, elemental phosphorus; and by STEM imaging of gold clusters used to immunolabel specific proteins within the cell nucleus. We have also used the EFTEM and STEM techniques to characterize nanoparticles that might be used as drug delivery systems.
机译:基于透射电子显微镜的成像技术可以阐明细胞环境中大分子复合物的结构和功能。除了提供基于结构的对比之外,电子显微镜与电子光谱结合还可以从生物分子中存在的内源性化学元素以及作为成像探针或治疗药物引入组织和细胞的外源性元素产生纳米级对比。这些功能可以补充诊断中使用的生物医学成像,同时还可以洞悉基本的细胞生物学过程。我们已经基于电子显微镜中的非常规成像模式开发了电子断层扫描(ET)技术,以绘制细胞室内特定类型的大分子图。 ET用于根据一系列二维投影确定三维结构,这些二维投影是通过将样本倾斜一定角度范围,然后通过重建三维体积来连续获取的。我们将重点放在将ET与其他成像模式结合的两种方法上:基于非弹性散射电子收集的能量过滤透射电子显微镜(EFTEM)和基于弹性散射电子收集的扫描透射电子显微镜(STEM)。 EFTEM断层扫描提供3D元素映射,STEM断层扫描提供用于标记特定大分子组装体的重原子簇的3D映射。通过对内在标志物元素磷的测量,对亚细胞核酸分布进行EFTEM成像,可以说明这些技术。以及通过STEM成像对用于免疫标记细胞核内特定蛋白的金簇进行成像。我们还使用了EFTEM和STEM技术来表征可用作药物递送系统的纳米颗粒。

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