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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Increasing the Brightness of Cyanine Fluorophores for Single-Molecule and Superresolution Imaging
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Increasing the Brightness of Cyanine Fluorophores for Single-Molecule and Superresolution Imaging

机译:增加用于单分子和超分辨率成像的花青荧光团的亮度

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摘要

In spite of their relatively low fluorescence quantum yield, cyanine dyes such as Cy3, Cy5, or Cy7 are widely used in singlemolecule fluorescence applications due to their high extinction coefficients and excellent photon yields. We show that the fluorescence quantum yield and lifetime of red-emitting cyanine dyes can be substantially increased in heavy water (D_2O) compared with water (H_2O). We find that the magnitude of the quantum yield increase in D_2O scales with the emission wavelength, reaching a particularly high value of 2.6-fold for the most red-emitting dye investigated, Cy7. We further demonstrate a higher photon yield in single-molecule superresolution experiments in D_2O compared to H_2O, which leads to an improved localization precision and hence better spatial resolution. This finding is especially beneficial for biological applications of fluorescence microscopy, which are typically carried out in aqueous media and which greatly profit from the red spectral range due to reduced cellular auto-fluorescence.
机译:尽管花青染料(例如Cy3,Cy5或Cy7)的荧光量子产率相对较低,但由于其高消光系数和出色的光子产率,它们被广泛用于单分子荧光应用中。我们表明,与水(H_2O)相比,重水(D_2O)中发红光的花菁染料的荧光量子产率和寿命可以大大提高。我们发现,随着发射波长的增加,D_2O尺度的量子产率增加幅度,对于研究最多的红色发射染料Cy7,达到了2.6倍的特别高的值。我们进一步证明,在D_2O中的单分子超分辨率实验中,与H_2O相比,光子产率更高,从而提高了定位精度,从而提高了空间分辨率。该发现对于荧光显微镜的生物学应用特别有益,荧光显微镜通常在水性介质中进行,并且由于减少的细胞自发荧光而大大受益于红色光谱范围。

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