论文标题

同步,无串扰相关的AFM和共聚焦显微镜/光谱镜

Synchronous, Crosstalk-free Correlative AFM and Confocal Microscopies/Spectroscopies

论文作者

Fernandes, Thales F. D., Saavedra, Oscar, Margeat, Emmanuel, Milhiet, Pierre-Emmanuel, Costa, Luca

论文摘要

显微镜已成为我们特征化工具的支柱,以观察生物系统和组装。不同显微镜的相关和同步使用依赖于图像采集期间不干预的基本假设。在这项工作中,通过探索原子力显微镜和共聚焦荧光 - 叶片成像显微镜(AFM-FLIM)的相关用途,我们量化了同步采集期间发生的串扰效应。我们表征和最小化不同AFM悬臂上的光力学作用,干扰了正常的AFM操作以及影响时间分辨荧光检测的尖端和悬臂的杂波。通过定义非交流实验成像参数,我们显示了相互作用力,荧光寿命和表征形态学(AFM)的荧光寿命和强度的二维映射,凝胶和流体阶段的局部粘度(FLIM)和支持的脂质模型膜分离的局部粘度(FLIM)。最后,作为原理证明,通过同步力和荧光光谱镜,我们通过控制其与金属表面的距离来精确调整位于AFM尖端的荧光纳米座的寿命。这打开了一种新型的淬火传感途径来对软生物样品(例如膜)进行成像,因为它不需要尖端样本的机械接触,而与液体中的常规AFM相反。

Microscopies have become pillars of our characterization tools to observe biological systems and assemblies. Correlative and synchronous use of different microscopies relies on the fundamental assumption of non-interference during images acquisitions. In this work, by exploring the correlative use of Atomic Force Microscopy and confocal-Fluorescence-Lifetime Imaging Microscopy (AFM-FLIM), we quantify cross-talk effects occurring during synchronous acquisition. We characterize and minimize optomechanical forces on different AFM cantilevers interfering with normal AFM operation as well as spurious luminescence from the tip and cantilever affecting time-resolved fluorescence detection. By defining non-interfering experimental imaging parameters, we show accurate real-time acquisition and two-dimensional mapping of interaction force, fluorescence lifetime and intensity characterizing morphology (AFM) and local viscosity (FLIM) of gel and fluid phases separation of supported lipid model membranes. Finally, as proof of principle by means of synchronous force and fluorescence spectroscopies, we precisely tune the lifetime of a fluorescent nanodiamond positioned on the AFM tip by controlling its distance from a metallic surface. This opens up a novel pathway of quench sensing to image soft biological samples such as membranes since it does not require tip-sample mechanical contact in contrast with conventional AFM in liquid.

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