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扫描荧光相关光谱法(SFCS),扫描路径垂直于膜平面。

Scanning fluorescence correlation spectroscopy (SFCS) with a scan path perpendicular to the membrane plane.

作者信息

Müller Paul, Schwille Petra, Weidemann Thomas

机构信息

BIOTEC, Biophysics, Technische Universität Dresden, Dresden, Germany.

出版信息

Methods Mol Biol. 2014;1076:635-51. doi: 10.1007/978-1-62703-649-8_29.

Abstract

Scanning fluorescence correlation spectroscopy (SFCS) with a scan path perpendicular to the membrane plane was introduced to measure diffusion and interactions of fluorescent components in free-standing biomembranes. Using a confocal laser scanning microscope (CLSM), the open detection volume is repeatedly scanned through the membrane at a kHz frequency. The fluorescence photons emitted from the detection volume are continuously recorded and stored in a file. While the accessory hardware requirements for a conventional CLSM are minimal, data evaluation can pose a bottleneck. The photon events must be assigned to each scan, in which the maximum signal intensities have to be detected, binned, and aligned between the scans, in order to derive the membrane-related intensity fluctuations of one spot. Finally, this time-dependent signal must be correlated and evaluated by well-known FCS model functions. Here we provide two platform-independent, open source software tools (PyScanFCS and PyCorrFit) that allow to perform all of these steps and to establish perpendicular SFCS in its one- or two-focus as well as its single- or dual-color modality.

摘要

引入了扫描路径垂直于膜平面的扫描荧光相关光谱技术(SFCS),以测量独立生物膜中荧光成分的扩散和相互作用。使用共聚焦激光扫描显微镜(CLSM),开放检测体积以千赫兹频率在膜上反复扫描。从检测体积发射的荧光光子被连续记录并存储在文件中。虽然传统CLSM的辅助硬件要求最低,但数据评估可能会成为瓶颈。光子事件必须分配到每次扫描中,在扫描中必须检测、分箱并对齐最大信号强度,以便得出一个点的与膜相关的强度波动。最后,这个随时间变化的信号必须通过著名的FCS模型函数进行相关分析和评估。在这里,我们提供了两个与平台无关的开源软件工具(PyScanFCS和PyCorrFit),它们允许执行所有这些步骤,并以单焦点或双焦点以及单色或双色模式建立垂直SFCS。

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