Engel Leeya, Zaoralová Magda, Zhou Momei, Dunn Alexander R, Oliver Stefan L
Dept. of Chemical Engineering, Stanford University, Stanford, CA, USA 94305.
Faculty of Mechanical Engineering, Technion - Israel Institute of Technology, Haifa, Israel 3200003.
bioRxiv. 2024 Sep 5:2023.08.05.552110. doi: 10.1101/2023.08.05.552110.
Cryogenic-electron tomography (cryo-ET) has provided an unprecedented glimpse into the nanoscale architecture of cells by combining cryogenic preservation of biological structures with electron tomography. Micropatterning of extracellular matrix proteins is increasingly used as a method to prepare adherent cell types for cryo-ET as it promotes optimal positioning of cells and subcellular regions of interest for vitrification, cryo-focused ion beam (cryo-FIB) milling, and data acquisition. Here we demonstrate a micropatterning workflow for capturing minimally adherent cell types, human T-cells and Jurkat cells, for cryo-FIB and cryo-ET. Our affinity capture system facilitated the nanoscale imaging of Jurkat cells, revealing extracellular filamentous structures. It improved workflow efficiency by consistently producing grids with a sufficient number of well positioned cells for an entire cryo-FIB session. Affinity capture can be extended to facilitate high resolution imaging of other adherent and non-adherent cell types with cryo-ET.
低温电子断层扫描(cryo-ET)通过将生物结构的低温保存与电子断层扫描相结合,以前所未有的方式让人们得以一窥细胞的纳米级结构。细胞外基质蛋白的微图案化越来越多地被用作一种为cryo-ET制备贴壁细胞类型的方法,因为它有助于细胞和感兴趣的亚细胞区域实现最佳定位,以进行玻璃化、低温聚焦离子束(cryo-FIB)铣削和数据采集。在这里,我们展示了一种微图案化工作流程,用于捕获用于cryo-FIB和cryo-ET的最低限度贴壁细胞类型,即人类T细胞和Jurkat细胞。我们的亲和捕获系统有助于对Jurkat细胞进行纳米级成像,揭示细胞外丝状结构。它通过持续生产出在整个cryo-FIB实验过程中有足够数量定位良好的细胞的网格,提高了工作流程效率。亲和捕获可以扩展,以促进使用cryo-ET对其他贴壁和非贴壁细胞类型进行高分辨率成像。