Department of Physics, Chemistry and Biology (IFM), Division of Molecular Surface Physics and Nano Science, Linköping University, Linköping SE-581 83, Sweden.
Nano Lett. 2021 Jan 13;21(1):222-229. doi: 10.1021/acs.nanolett.0c03554. Epub 2020 Dec 2.
Photoemission electron microscopy and imaging X-ray photoelectron spectroscopy are today frequently used to obtain chemical and electronic states, chemical shifts, work function profiles within the fields of surface- and material sciences. Lately, because of recent technological advances, these tools have also been valuable within life sciences. In this study, we have investigated the power of photoemission electron microscopy and imaging X-ray photoelectron spectroscopy for visualization of human neutrophil granulocytes. These cells, commonly called neutrophils, are essential for our innate immune system. We hereby investigate the structure and morphology of neutrophils when adhered to gold and silicon surfaces. Energy-filtered imaging of single cells are acquired. The characteristic polymorphonuclear cellular nuclei divided into 2-5 lobes is visualized. Element-specific imaging is achieved based on O 1s, P 2p, C 1s, Si 2p, and N 1s core level spectra, delivering elemental distribution with submicrometer resolution, illustrating the strength of this type of cellular morphological studies.
光电子发射电子显微镜和成像 X 射线光电子能谱技术常用于在表面和材料科学领域获取化学和电子态、化学位移和功函数分布。最近,由于技术的进步,这些工具在生命科学领域也具有很高的价值。在这项研究中,我们研究了光电子发射电子显微镜和成像 X 射线光电子能谱技术在可视化人中性粒细胞中的应用。这些细胞通常被称为中性粒细胞,是我们先天免疫系统所必需的。我们研究了中性粒细胞在附着于金和硅表面时的结构和形态。我们获得了单个细胞的能谱成像。可视化了特征性的多核细胞的细胞核分为 2-5 叶。基于 O 1s、P 2p、C 1s、Si 2p 和 N 1s 芯能级谱实现了元素特异性成像,以亚微米分辨率提供元素分布,展示了这种细胞形态研究的优势。