Human Technopole, Milan, Italy.
Leica Microsystems, Diegem, Belgium.
Nat Methods. 2024 Sep;21(9):1693-1701. doi: 10.1038/s41592-024-02384-6. Epub 2024 Sep 13.
Cryo-focused ion beam milling has substantially advanced our understanding of molecular processes by opening windows into cells. However, applying this technique to complex samples, such as tissues, has presented considerable technical challenges. Here we introduce an innovative adaptation of the cryo-lift-out technique, serialized on-grid lift-in sectioning for tomography (SOLIST), addressing these limitations. SOLIST enhances throughput, minimizes ice contamination and improves sample stability for cryo-electron tomography. It thereby facilitates the high-resolution imaging of a wide range of specimens. We illustrate these advantages on reconstituted liquid-liquid phase-separated droplets, brain organoids and native tissues from the mouse brain, liver and heart. With SOLIST, cellular processes can now be investigated at molecular resolution directly in native tissue. Furthermore, our method has a throughput high enough to render cryo-lift-out a competitive tool for structural biology. This opens new avenues for unprecedented insights into cellular function and structure in health and disease, a 'biopsy at the nanoscale'.
冷冻聚焦离子束铣削通过为细胞打开窗口,极大地促进了我们对分子过程的理解。然而,将该技术应用于复杂样本,如组织,存在相当大的技术挑战。在这里,我们引入了冷冻捞取技术的创新改编,即用于断层扫描的序列化网格内捞取切片(SOLIST),以解决这些限制。SOLIST 提高了通量,最大限度地减少了冰污染并提高了冷冻电子断层扫描的样品稳定性。从而促进了广泛标本的高分辨率成像。我们在重组的液-液相分离液滴、脑类器官和来自小鼠大脑、肝脏和心脏的天然组织上说明了这些优势。有了 SOLIST,现在可以直接在天然组织中以分子分辨率研究细胞过程。此外,我们的方法通量足够高,使得冷冻捞取成为结构生物学的一种有竞争力的工具。这为在健康和疾病中对细胞功能和结构进行前所未有的洞察开辟了新途径,即“纳米级活检”。