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Two-Color Far-Field Fluorescence Nanoscopy

机译:两色远场荧光纳米技术

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摘要

We demonstrate two-color fluorescence microscopy with nanoscale spatial resolution by applying stimulated emission depletion on fluorophores differing in their absorption and emission spectra. Green- and red-emitting fluorophores are selectively excited and quenched using dedicated beam pairs. The stimulated emission depletion beams deliver a lateral resolution of <30 nm and 65 nm for the green and the red color channel, respectively. The ∼5 nm alignment accuracy of the two images establishes the precision with which differently labeled proteins are correlated in space. Colocalized nanoscopy is demonstrated with endosomal protein patterns and by resolving nanoclusters of a mitochondrial outer membrane protein, Tom20, in relation with the F1F0ATP synthase. The joint improvement of resolution and colocalization demonstrates the emerging potential of far-field fluorescence nanoscopy to study the spatial organization of macromolecules in cells.
机译:我们通过在荧光团的吸收和发射光谱不同的荧光团上应用受激发射损耗来证明具有纳米级空间分辨率的双色荧光显微镜。使用专用的光束对可选择性地激发和猝灭发射绿色和红色荧光的荧光团。受激的发射耗尽光束分别为绿色和红色通道提供小于30 nm和65 nm的横向分辨率。两幅图像的〜5 nm对准精度确定了不同标记的蛋白质在空间中相关的精度。共定位的纳米显微镜检查证明与内体蛋白质模式,并解决了与F1F0ATP合酶有关的线粒体外膜蛋白Tom20的纳米簇。分辨率和共定位的共同提高证明了远场荧光纳米显微镜在研究细胞中大分子的空间组织方面的新兴潜力。

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