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Reversible optical control of cyanine fluorescence in fixed and living cells: optical lock-in detection immunofluorescence imaging microscopy

机译:固定细胞和活细胞中花青素荧光的可逆光学控制:光学锁定检测免疫荧光成像显微镜

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摘要

Optical switch probes undergo rapid and reversible transitions between two distinct states, one of which may fluoresce. This class of probe is used in various super-resolution imaging techniques and in the high-contrast imaging technique of optical lock-in detection (OLID) microscopy. Here, we introduce optimized optical switches for studies in living cells under standard conditions of cell culture. In particular, a highly fluorescent cyanine probe (Cy or Cy3) is directly or indirectly linked to naphthoxazine (NISO), a highly efficient optical switch that undergoes robust, 405/532 nm-driven transitions between a colourless spiro (SP) state and a colourful merocyanine (MC) state. The intensity of Cy fluorescence in these Cy/Cy3-NISO probes is reversibly modulated between a low and high value in SP and MC states, respectively, as a result of Förster resonance energy transfer. Cy/Cy3-NISO probes are targeted to specific proteins in living cells where defined waveforms of Cy3 fluorescence are generated by optical switching of the SP and MC states. Finally, we introduce a new imaging technique (called OLID-immunofluorescence microscopy) that combines optical modulation of Cy3 fluorescence from Cy3/NISO co-labelled antibodies within fixed cells and OLID analysis to significantly improve image contrast in samples having high background or rare antigens.
机译:光学开关探针在两个不同的状态之间经历快速且可逆的转变,其中之一可能发荧光。此类探针用于各种超分辨率成像技术和光学锁定检测(OLID)显微镜的高对比度成像技术中。在这里,我们介绍优化的光学开关,用于在标准细胞培养条件下在活细胞中进行研究。特别是,高度荧光的花青探针(Cy或Cy3)直接或间接与萘并恶嗪(NISO)连接,萘并恶嗪是一种高效的光学开关,在无色螺旋(SP)态和荧光态之间经历了稳健的405/532 nm驱动的跃迁。七彩的花青(MC)状态。由于Förster共振能量转移,这些Cy / Cy3-NISO探针中Cy荧光的强度分别在SP和MC状态的低值和高值之间可逆地调节。 Cy / Cy3-NISO探针针对活细胞中的特定蛋白质,在活细胞中,通过SP和MC状态的光学切换生成了Cy3荧光的定义波形。最后,我们介绍了一种新的成像技术(称为OLID免疫荧光显微镜术),该技术结合了来自固定细胞内Cy3 / NISO共标记抗体的Cy3荧光的光学调制和OLID分析,可显着改善具有高背景或稀有抗原的样品的图像对比度。

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