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Fluorescence lifetime microscopy for monitoring cell adhesion using metal induced energy transfer

机译:荧光寿命显微镜,用于使用金属诱导能量转移监测细胞粘附

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摘要

A precise control and a reliable monitoring tool for the adhesion properties of a cell are very important in atherosclerosis studies. If endothelial cells in contact with the intracellular membrane are not attached securely, low-density lipoprotein (LDL) particles can enter into the inner membrane. It is therefore necessary to measure conditions under which endothelial cell detachment occurs. When a cell is attached to a metal thin film, the lifetime of a fluorescence probe attached to the membrane of the cell is reduced by the metal-induced energy transfer (MIET). Fluorescence lifetime imaging microscopy (FLIM) is used to monitor the attachment condition of a cell to a metal surface using FRET. However, this requires high numerical aperture (NA) objective lens because axial confocal resolution must be smaller than the cell thickness. This requirement limits the field of view of the measurement specimen. In this study we provides a new method which can measure adhesion properties of endothelial cells even with a low NA objective lens by resolving two lifetime components in FLIM.
机译:在动脉粥样硬化研究中,精确控制和用于细胞的粘附性的可靠监测工具非常重要。如果与细胞内膜接触的内皮细胞不固定,则低密度脂蛋白(LDL)颗粒可以进入内膜。因此,有必要测量发生内皮细胞脱离的条件。当电池附着在金属薄膜上时,通过金属诱导的能量转移(MIET)减少了附着于电池膜的荧光探针的寿命。荧光寿命成像显微镜(FLIM)用于使用FRET监测电池的附着条件到金属表面。然而,这需要高数值孔径(NA)物镜,因为轴向共聚焦分辨率必须小于电池厚度。该要求限制了测量标本的视野。在该研究中,我们提供了一种新方法,即使通过在Flim中解析两种寿命部件,即使在低Na物镜的情况下也能测量内皮细胞的粘附性能。

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