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The Bionanoprobe: hard X-ray fluorescence nanoprobe with cryogenic capabilities

机译:Bionanoprobe:具有低温功能的硬X射线荧光纳米探针

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摘要

Hard X-ray fluorescence microscopy is one of the most sensitive techniques for performing trace elemental analysis of biological samples such as whole cells and tissues. Conventional sample preparation methods usually involve dehydration, which removes cellular water and may consequently cause structural collapse, or invasive processes such as embedding. Radiation-induced artifacts may also become an issue, particularly as the spatial resolution increases beyond the sub-micrometer scale. To allow imaging under hydrated conditions, close to the ‘natural state’, as well as to reduce structural radiation damage, the Bionanoprobe (BNP) has been developed, a hard X-ray fluorescence nanoprobe with cryogenic sample environment and cryo transfer capabilities, dedicated to studying trace elements in frozen-hydrated biological systems. The BNP is installed at an undulator beamline at sector 21 of the Advanced Photon Source. It provides a spatial resolution of 30 nm for two-dimensional fluorescence imaging. In this first demonstration the instrument design and motion control principles are described, the instrument performance is quantified, and the first results obtained with the BNP on frozen-hydrated whole cells are reported.
机译:硬X射线荧光显微镜是对生物样品(例如全细胞和组织)进行痕量元素分析的最灵敏技术之一。常规的样品制备方法通常涉及脱水,脱水会除去细胞中的水,从而可能导致结构塌陷或侵入性过程,例如包埋。辐射引起的伪影也可能成为一个问题,特别是当空间分辨率增加到亚微米以上时。为了在接近自然状态的水合条件下成像,并减少结构辐射损伤,已开发出Bionanoprobe(BNP),这是一种具有低温样品环境和低温传递能力的硬X射线荧光纳米探针,专用研究冷冻水合生物系统中的微量元素。 BNP安装在Advanced Photon Source的扇区21的起伏器光束线上。它为二维荧光成像提供了30 nm的空间分辨率。在此第一个演示中,描述了仪器设计和运动控制原理,量化了仪器性能,并报告了BNP对冷冻水合全细胞获得的第一个结果。

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