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Gas-Assisted Annular Microsprayer for Sample Preparation for Time-Resolved Cryo-Electron Microscopy

机译:气体辅助环形微喷射器用于时间分辨低温电子显微镜的样品制备

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摘要

Time-resolved cryo electron microscopy (TRCEM) has emerged as a powerful technique for transient structural characterization of isolated biomacromolecular complexes in their native state within the time scale of seconds to milliseconds. For TRCEM sample preparation, microfluidic device [] has been demonstrated to be a promising approach to facilitate TRCEM biological sample preparation. It is capable of achieving rapidly aqueous sample mixing, controlled reaction incubation, and sample deposition on electron microscopy (EM) grids for rapid freezing. One of the critical challenges is to transfer samples to cryo-EM grids from the microfluidic device. By using microspraying method, the generated droplet size needs to be controlled to facilitate the thin ice film formation on the grid surface for efficient data collection, while not too thin to be dried out before freezing, i.e., optimized mean droplet size needs to be achieved. In this work, we developed a novel monolithic three dimensional (3D) annular gas-assisted microfluidic sprayer using 3D MEMS (MicroElectroMechanical System) fabrication techniques. The microsprayer demonstrated dense and consistent microsprays with average droplet size between 6-9 μm, which fulfilled the above droplet size requirement for TRCEM sample preparation. With droplet density of around 12-18 per grid window (window size is 58×58 μm), and the data collectible thin ice region of >50% total wetted area, we collected ~800-1000 high quality CCD micrographs in a 6-8 hour period of continuous effort. This level of output is comparable to what were routinely achieved using cryo-grids prepared by conventional blotting and manual data collection. In this case, weeks of data collection process with the previous device [] has shortened to a day or two. And hundreds of microliter of valuable sample consumption can be reduced to only a small fraction.
机译:时间分辨低温电子显微镜(TRCEM)已经成为一种强大的技术,可以在几秒到毫秒的时间范围内对处于其原始状态的分离的生物大分子复合物进行瞬态结构表征。对于TRCEM样品制备,已证明微流体装置[]是促进TRCEM生物学样品制备的有前途的方法。它能够实现快速的水性样品混合,受控的反应温育以及在电子显微镜(EM)栅格上进行快速冷冻的样品沉积。关键挑战之一是将样品从微流控设备转移到冷冻EM网格中。通过使用微喷方法,需要控制产生的液滴尺寸,以利于网格表面上薄冰膜的形成,以进行有效的数据收集,同时又不能太薄以至于不能在冷冻之前变干,即,需要实现优化的平均液滴尺寸。在这项工作中,我们使用3D MEMS(微机电系统)制造技术开发了一种新颖的整体式三维(3D)环形气体辅助微流体喷雾器。微型喷雾器显示出密集且一致的微型喷雾,平均液滴尺寸在6-9μm之间,满足了TRCEM样品制备的上述液滴尺寸要求。每个网格窗口的液滴密度约为12-18(窗口尺寸为58×58μm),并且数据可收集的薄冰区域占总湿润面积的50%以上,我们在6个像素中收集了约800-1000个高质量CCD显微照片8小时的持续努力期间。该输出水平与使用常规印迹法和手动数据收集法制备的低温格栅可实现的常规水平相当。在这种情况下,以前的设备[]进行的数周数据收集过程缩短为一两天。数百微升的宝贵样品消耗可以减少到一小部分。

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