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Control and Manipulation of Pathogens with an Optical Trap for Live Cell Imaging of Intercellular Interactions

机译:控制和操纵病原体的光学陷阱与细胞间相互作用的活细胞成像。

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摘要

The application of live cell imaging allows direct visualization of the dynamic interactions between cells of the immune system. Some preliminary observations challenge long-held beliefs about immune responses to microorganisms; however, the lack of spatial and temporal control between the phagocytic cell and microbe has rendered focused observations into the initial interactions of host response to pathogens difficult. This paper outlines a method that advances live cell imaging by integrating a spinning disk confocal microscope with an optical trap, also known as an optical tweezer, in order to provide exquisite spatial and temporal control of pathogenic organisms and place them in proximity to host cells, as determined by the operator. Polymeric beads and live, pathogenic organisms (Candida albicans and Aspergillus fumigatus) were optically trapped using non-destructive forces and moved adjacent to living cells, which subsequently phagocytosed the trapped particle. High resolution, transmitted light and fluorescence-based movies established the ability to observe early events of phagocytosis in living cells. To demonstrate the broad applicability of this method to immunological studies, anti-CD3 polymeric beads were also trapped and manipulated to form synapses with T cells in vivo, and time-lapse imaging of synapse formation was also obtained. By providing a method to exert fine control of live pathogens with respect to immune cells, cellular interactions can be captured by fluorescence microscopy with minimal perturbation to cells and can yield powerful insight into early responses of innate and adaptive immunity.
机译:活细胞成像的应用可以直接观察免疫系统细胞之间的动态相互作用。一些初步观察结果挑战了人们长期以来对微生物免疫反应的信念。然而,吞噬细胞和微生物之间缺乏空间和时间控制,使得难以集中观察宿主对病原体反应的初始相互作用。本文概述了一种方法,该方法通过将旋转盘共聚焦显微镜与光学陷阱(也称为光学镊子)集成在一起来进行活细胞成像,以提供对病原生物的精细时空控制,并将其放置在宿主细胞附近,由操作员确定。使用非破坏力将聚合物珠粒和活的病原性生物(白色念珠菌和烟曲霉)光学捕获,并移至邻近活细胞的位置,随后吞噬捕获的颗粒。高分辨率,基于透射光和荧光的电影建立了观察活细胞吞噬早期事件的能力。为了证明该方法在免疫学研究中的广泛应用,还捕获了抗CD3聚合物珠并对其进行了处理,以在体内与T细胞形成突触,并且还获得了突触形成的延时成像。通过提供一种对免疫细胞对活的病原体进行精细控制的方法,可以通过荧光显微镜捕获细胞相互作用,而对细胞的扰动最小,并且可以深入了解先天和适应性免疫的早期反应。

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