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首页> 外文期刊>Angewandte Chemie >Photoswitching Kinetics and Phase-Sensitive Detection Add Discriminative Dimensions for Selective Fluorescence Imaging
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Photoswitching Kinetics and Phase-Sensitive Detection Add Discriminative Dimensions for Selective Fluorescence Imaging

机译:光开关动力学和相敏检测增加了选择性荧光成像的判别尺寸。

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摘要

Non-invasive separation-free protocols are attractive for analyzing complex mixtures. To increase selectivity, an analysis under kinetic control, through exploitation of the photochemical reactivity of labeling contrast agents, is described. The simple protocol is applied in optical fluorescence microscopy, where autofluorescence, light scattering, as well as spectral crowding presents limitations. Introduced herein is OPIOM (out-of-phase imaging after optical modulation), which exploits the rich kinetic signature of a photoswitching fluorescent probe to increase selectively and quantitatively its contrast. Filtering the specific contribution of the probe only requires phase-sensitive detection upon matching the photoswitching dynamics of the probe and the intensity and frequency of a modulated monochromatic light excitation. After invitro validation, we applied OPIOM for selective imaging in mammalian cells and zebrafish, thus opening attractive perspectives for multiplexed observations in biological samples.
机译:无创无分离方案对于分析复杂混合物很有吸引力。为了增加选择性,描述了在动力学控制下通过利用标记造影剂的光化学反应性进行的分析。该简单协议适用于光学荧光显微镜,其中自发荧光,光散射以及光谱拥挤存在局限性。本文介绍的是OPIOM(光学调制后的异相成像),它利用了光开关荧光探针的丰富动力学特征来选择性和定量地提高其对比度。过滤探针的特定贡献仅需在将探针的光开关动力学与调制的单色光激发的强度和频率相匹配时进行相敏检测。经过体外验证后,我们将OPIOM应用到哺乳动物细胞和斑马鱼的选择性成像中,从而为生物样品中的多重观察打开了诱人的前景。

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