Wan Peng, Tao Meiyue, Zhou Yumeng, Han Wenjun, Wang Jianxia, Wang Jinghan
Instrumental Analysis Center, Dalian University of Technology, Dalian, China.
School of Materials Science and Engineering, Dalian University of Technology, Dalian, China.
Bio Protoc. 2024 Dec 20;14(24):e5143. doi: 10.21769/BioProtoc.5143.
Cryo-electron microscopy (cryo-EM) is a powerful technique capable of investigating samples in a hydrated state, compared to conventional high-vacuum electron microscopy that requires samples to be completely dry. During the drying process, numerous features and details may be lost due to damage caused by dehydration. Cryo-EM circumvents these problems by cryo-fixing the samples, thereby retaining the intact and original features of hydrated samples. This protocol describes a step-by-step cryo-scanning electron microscopy (cryo-SEM) experimental procedure with as the subject. By employing filter paper as the sample substrate, we propose a simple and reliable method for cryo-fixation and freeze-fracture of Chlorella sorokiniana in water suspension. The advantage of using filter paper as a substrate lies in its ability to support a thin film of sample, enabling a cold knife to make a cut effortlessly and produce a clean freeze-fractured surface for SEM investigation. By following the approach described in this protocol, both the internal structure and surface morphology of can be easily resolved with high quality. This protocol is highly versatile and can be applied to samples dispersed in water or solvents, including cyanobacterial cells, algal cells, and any kind of sample that can be adsorbed onto filter paper. Key features • Introducing a reliable way for ideal freeze-fracture of a water-suspended sample using filter paper as substrate. • Detailed step-by-step descriptions of the entire experiment, covering how to operate the instruments and including some practical experimental tips. Graphical overview.
冷冻电子显微镜(cryo-EM)是一种强大的技术,与需要样品完全干燥的传统高真空电子显微镜相比,它能够研究水合状态的样品。在干燥过程中,由于脱水造成的损伤,许多特征和细节可能会丢失。冷冻电子显微镜通过对样品进行冷冻固定来规避这些问题,从而保留水合样品的完整和原始特征。本方案描述了以[具体研究对象缺失]为对象的冷冻扫描电子显微镜(cryo-SEM)实验步骤。通过使用滤纸作为样品基底,我们提出了一种简单可靠的方法,用于对悬浮在水中的小球藻进行冷冻固定和冷冻断裂。使用滤纸作为基底的优点在于它能够支撑一层薄的样品膜,使冷刀能够轻松切割并产生一个干净的冷冻断裂表面用于扫描电子显微镜研究。按照本方案中描述的方法,可以轻松地高质量解析[具体研究对象缺失]的内部结构和表面形态。本方案具有高度的通用性,可应用于分散在水或溶剂中的样品,包括蓝藻细胞、藻类细胞以及任何可吸附在滤纸上的样品。关键特征 • 介绍一种以滤纸为基底对水悬浮样品进行理想冷冻断裂的可靠方法。 • 对整个实验进行详细的分步描述,涵盖仪器操作方法并包括一些实际实验技巧。图形概述。