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Imaging live cell in micro-liquid enclosure by X-ray laser diffraction

机译:通过X射线激光衍射在微液体外壳中对活细胞成像

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摘要

Emerging X-ray free-electron lasers with femtosecond pulse duration enable single-shot snapshot imaging almost free from sample damage by outrunning major radiation damage processes. In bioimaging, it is essential to keep the sample close to its natural state. Conventional high-resolution imaging, however, suffers from severe radiation damage that hinders live cell imaging. Here we present a method for capturing snapshots of live cells kept in a micro-liquid enclosure array by X-ray laser diffraction. We place living Microbacterium lacticum cells in an enclosure array and successively expose each enclosure to a single X-ray laser pulse from the SPring-8 Angstrom Compact Free-Electron Laser. The enclosure itself works as a guard slit and allows us to record a coherent diffraction pattern from a weakly-scattering submicrometre-sized cell with a clear fringe extending up to a 28-nm full-period resolution. The reconstructed image reveals living whole-cell structures without any staining, which helps advance understanding of intracellular phenomena.
机译:飞秒脉冲持续时间的新兴X射线自由电子激光器能够通过超越主要的辐射损伤过程来实现几乎没有样品损伤的单次快照成像。在生物成像中,必须使样品保持接近自然状态。然而,常规的高分辨率成像遭受严重的辐射损伤,从而阻碍了活细胞成像。在这里,我们提出了一种通过X射线激光衍射捕获保留在微液罩阵列中的活细胞快照的方法。我们将活的乳酸杆菌细胞放置在封闭的阵列中,并依次将每个封闭暴露于来自SPring-8埃紧凑型自由电子激光器的单个X射线激光脉冲。外壳本身起着保护缝的作用,使我们能够记录弱散射亚微米级单元的相干衍射图,该单元的清晰条纹可扩展至28 nm全周期分辨率。重建的图像显示了活的全细胞结构,没有任何染色,这有助于进一步了解细胞内现象。

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