Institute of Science and Technology Austria, Am Campus 1, Klosterneuburg, Austria.
Institute of Science and Technology Austria, Am Campus 1, Klosterneuburg, Austria.
J Struct Biol. 2020 Dec 1;212(3):107633. doi: 10.1016/j.jsb.2020.107633. Epub 2020 Sep 25.
Cryo-electron microscopy (cryo-EM) of cellular specimens provides insights into biological processes and structures within a native context. However, a major challenge still lies in the efficient and reproducible preparation of adherent cells for subsequent cryo-EM analysis. This is due to the sensitivity of many cellular specimens to the varying seeding and culturing conditions required for EM experiments, the often limited amount of cellular material and also the fragility of EM grids and their substrate. Here, we present low-cost and reusable 3D printed grid holders, designed to improve specimen preparation when culturing challenging cellular samples directly on grids. The described grid holders increase cell culture reproducibility and throughput, and reduce the resources required for cell culturing. We show that grid holders can be integrated into various cryo-EM workflows, including micro-patterning approaches to control cell seeding on grids, and for generating samples for cryo-focused ion beam milling and cryo-electron tomography experiments. Their adaptable design allows for the generation of specialized grid holders customized to a large variety of applications.
冷冻电子显微镜(cryo-EM)可对细胞样本进行分析,从而深入了解在自然环境下的生物过程和结构。然而,目前仍存在一个主要的挑战,即如何高效且可重复地制备适用于后续 cryo-EM 分析的贴壁细胞。这是因为许多细胞样本对 EM 实验所需的不同接种和培养条件非常敏感,而且细胞材料的数量通常有限,同时 EM 网格及其基底也很脆弱。在此,我们提出了低成本且可重复使用的 3D 打印网格支架,旨在改善挑战性细胞样本直接在网格上培养时的标本制备。所描述的网格支架提高了细胞培养的可重复性和通量,并减少了细胞培养所需的资源。我们表明,网格支架可集成到各种 cryo-EM 工作流程中,包括用于控制网格上细胞接种的微图案化方法,以及用于生成用于 cryo-聚焦离子束铣削和 cryo-电子断层扫描实验的样品。其灵活的设计允许生成专门的网格支架,以满足各种应用的需求。