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Multiparametric atomic force microscopy imaging of single bacteriophages extruding from living bacteria

机译:从活菌中挤出的单个噬菌体的多参数原子力显微镜成像

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Force-distance (FD) curve-based atomic force microscopy is a valuable tool to simultaneously image the structure and map the biophysical properties of biological samples at the nanoscale. Traditionally, FD-based atomic force microscopy has been severely limited by its poor temporal and lateral resolutions. Here we report the use of advanced FD-based technology combined with biochemically sensitive tips to image filamentous bacteriophages extruding from living bacteria at unprecedented speed and resolution. Directly correlated multiparametric images of the structure, adhesion and elasticity of infected bacteria demonstrate that the sites of assembly and extrusion localize at the bacterial septum in the form of soft nanodomains surrounded by stiff cell wall material. The quantitative nano-bio-imaging method presented here offers a wealth of opportunities for mapping the physical properties and molecular interactions of complex biosystems, from viruses to tissues.
机译:基于力距离(FD)曲线的原子力显微镜是一种有价值的工具,可同时对结构进行成像并绘制纳米尺度生物样品的生物物理特性。传统上,基于FD的原子力显微镜受到时间和横向分辨率差的严重限制。在这里,我们报告了结合先进的基于FD的技术与生化敏感尖端的结合使用,以前所未有的速度和分辨率对从活细菌中挤出的丝状噬菌体进行成像。与感染细菌的结构,黏附和弹性直接相关的多参数图像表明,组装和挤出位点以被硬细胞壁材料包围的软纳米域的形式定位在细菌隔膜上。本文介绍的定量纳米生物成像方法为绘制从病毒到组织的复杂生物系统的物理特性和分子相互作用提供了许多机会。

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