State Key Laboratory for Pollution Control, School of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.
State Key Laboratory for Pollution Control, School of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.
J Hazard Mater. 2022 Aug 15;436:129192. doi: 10.1016/j.jhazmat.2022.129192. Epub 2022 May 21.
Recent developments point to exciting potential of cryogenic electron microscopy (cryo-EM) for fundamental environmental research, especially for characterizing environmental samples with a high-water content. As a matter of fact, most environmental materials including soils, sediments, biomass, solid wastes and sludge are hydrated. This perspective provides a brief synopsis of cryo-EM and highlights emerging applications in environmental research. With cryogenic techniques, specimens are preserved by rapid freezing and observed with electron microscopes operating at high-vacuum and low temperature to keep the ice in amorphous state and reduce the effect of radiation damage. So far, cryo-EM has been successfully applied to advance fundamental understanding of physical, chemical and biological mechanisms due to its desirable properties to maintain the native state of hydrated samples and visualize structures at high resolution in three dimensions. The cryo-EM technique also has significant applications to the technology development of pathogen detection, sludge dewatering, waste treatment, and green chemical production from cellular biomass as cellular water content can be clearly observed and manipulated at the single cell level.
最近的发展表明,低温电子显微镜(cryo-EM)在基础环境研究中具有令人兴奋的潜力,特别是在对高含水量的环境样品进行特征描述方面。事实上,包括土壤、沉积物、生物质、固体废物和污泥在内的大多数环境材料都是水合的。本文简要概述了 cryo-EM,并强调了其在环境研究中的新兴应用。通过低温技术,样品通过快速冷冻保存,并在高真空和低温下操作的电子显微镜下观察,以保持冰处于非晶态并减少辐射损伤的影响。到目前为止,cryo-EM 已经成功地应用于推进物理、化学和生物机制的基本理解,因为它具有保持水合样品的天然状态并在三维高分辨率下可视化结构的理想特性。cryo-EM 技术还在病原体检测、污泥脱水、废物处理以及从细胞生物质生产绿色化学品等技术的发展方面具有重要应用,因为可以在单细胞水平上清晰地观察和操作细胞水含量。