École Normale Supérieure-PSL Research University, Department of Chemistry, 24 rue Lhomond, 75005 Paris (France); Sorbonne Universités, UPMC Univ Paris 06, PASTEUR, 75005 Paris (France); CNRS, UMR 8640 PASTEUR, 75005 Paris (France).
Angew Chem Int Ed Engl. 2015 Feb 23;54(9):2633-7. doi: 10.1002/anie.201408985. Epub 2015 Jan 21.
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 in vitro validation, we applied OPIOM for selective imaging in mammalian cells and zebrafish, thus opening attractive perspectives for multiplexed observations in biological samples.
非侵入性的无分离协议对于分析复杂混合物具有吸引力。为了提高选择性,通过利用标记对比剂的光化学反应性来进行动力学控制下的分析。该简单的方案应用于光学荧光显微镜中,其中自发荧光、光散射以及光谱拥挤都会带来限制。本文引入了 OPIOM(光调制后的相差成像),它利用光开关荧光探针的丰富动力学特征来选择性地增加并定量其对比度。仅在匹配探针的光开关动力学以及调制单色光激发的强度和频率时进行相位敏感检测,就可以滤除探针的特定贡献。经过体外验证,我们将 OPIOM 应用于哺乳动物细胞和斑马鱼的选择性成像,从而为生物样本中的多路复用观察开辟了有吸引力的前景。