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首页> 外文期刊>Journal of Microscopy >Variable-angle total internal reflection fluorescence microscopy (VA-TIRFM): realization and application of a compact illumination device
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Variable-angle total internal reflection fluorescence microscopy (VA-TIRFM): realization and application of a compact illumination device

机译:可变角度全内反射荧光显微镜(VA-TIRFM):紧凑型照明设备的实现和应用

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A novel compact illumination device in variable-angle total internal reflection fluorescence microscopy (VA-TIRFM) is described. This device replaces the standard condensor of an upright microscope. Light from different laser sources is delivered via a monomode fibre and focused onto identical parts of a sample under variable angles of total internal reflection. Thus, fluorophores in close proximity to a cell-substrate interface are excited by an evanescent wave with variable penetration depth, and localized with high (nanometre) axial resolution. In addition to quantitative measurements in solution, fluorescence markers of the cytoplasm and the plasma membrane, i.e. calcein and laurdan, were examined using cultivated endothelial cells. Distances between the glass substrate and the plasma membrane were determined using the mathematical algorithm of a four-layer model, as well as a Gaussian-shaped intensity profile of the illumination spot on the samples. Distances between 0 and 30 nm in focal contacts and between 100 and 300 nm in other parts of the cell were thus determined. In addition to measurements of cell-substrate topology, the illumination device appears appropriate for numerous applications in which high axial resolution is required, e.g. experiments on endocytosis or exocytosis, as well as measurements of ion concentrations proximal to the plasma membrane. The compact illumination device is also suitable for combining TIRFM with further innovative techniques, e.g. time-resolved fluorescence spectroscopy, fluorescence lifetime imaging (FLIM) or fluorescence resonance energy transfer (FRET). [References: 41]
机译:描述了一种在变角全内反射荧光显微镜(VA-TIRFM)中的新型紧凑照明装置。该设备替代了立式显微镜的标准聚光镜。来自不同激光源的光通过单模光纤传输,并在全内反射的可变角度下聚焦到样品的相同部分上。因此,紧邻细胞-基质界面的荧光团被具有可变穿透深度的van逝波激发,并以高(纳米)轴向分辨率定位。除了在溶液中进行定量测量外,还使用培养的内皮细胞检查了细胞质和质膜的荧光标记物,即钙黄绿素和劳兰丹。使用四层模型的数学算法以及样品上照明点的高斯形强度分布,确定玻璃基板和质膜之间的距离。因此确定了在焦点接触中0到30nm之间以及在电池的其他部分中100到300nm之间的距离。除了测量单元-衬底拓扑结构之外,该照明装置似乎还适用于需要高轴向分辨率的许多应用,例如,高灵敏度。内吞作用或胞吐作用的实验,以及质膜附近离子浓度的测量。紧凑型照明设备还适合将TIRFM与其他创新技术结合使用,例如时间分辨荧光光谱,荧光寿命成像(FLIM)或荧光共振能量转移(FRET)。 [参考:41]

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