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Sulfone-Rhodamines: A New Class of Near-Infrared Fluorescent Dyes for Bioimaging

机译:砜若丹明:用于生物成像的一类新的近红外荧光染料。

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Given the wavelength dependence of tissue transparency and the requirement for sufficiently low background autofluorescence, the development of fluorescent dyes with excitation and emission maxima beyond 700 nm is highly desired, but it is a challenging task. Herein, a new class of fluorescent dyes, named sulfone-rhodamines (SO(2)Rs), was developed on the basis of the one-atom replacement of the rhodamine 10-position O atom by a sulfone group. Such a modification makes their absorption and emission maxima surprisingly reach up to 700-710 and 728-752 nm, respectively, much longer than their O-,C-, and Si-rhodamine analogs, due to the unusual d*-pi* conjugation. Among these dyes, SO(2)R4 and SO(2)R5, bearing disubstituted meso-phenyl groups, show the greatest potentials for bioimaging applications in view of their wide pH range of application, high photostability, and big extinction coefficients and fluorescence quantum yields. They could quickly penetrate cells to give stable NIR fluorescence, even after continuous irradiation by a semiconductor laser, making them suitable candidates for time-lapse and long-term bioimaging applications. Moreover, they could specifically localize in lysosomes independent of alkylmorpholine targeted group, thus avoiding the problematic alkalization effect suffered by most LysoTrackers. Further imaging assays of frozen slices of rat kidney reveal that their tissue imaging depth is suprior to the widely used NIR labeling agent Cy5.5.
机译:考虑到组织透明度的波长依赖性以及对背景自发荧光的足够低的要求,非常需要开发具有超过700 nm的激发和发射最大值的荧光染料,但这是一项艰巨的任务。在此,基于砜基团若丹明10位O原子的单原子取代,开发了一种新型的荧光染料,称为砜-若丹明(SO(2)Rs)。由于不寻常的d * -pi *偶联,这种修饰使得它们的吸收和发射最大值分别达到700-710和728-752 nm,比其O-,C-和Si-若丹明类似物长得多。 。在这些染料中,具有双取代的中间苯基基团的SO(2)R4和SO(2)R5由于其广泛的pH应用范围,高的光稳定性,大的消光系数和荧光量子,显示出最大的生物成像应用潜力。产量。即使在半导体激光器连续照射后,它们也可以快速穿透细胞以提供稳定的NIR荧光,从而使其非常适合用于延时和长期生物成像应用。而且,它们可以独立于烷基吗啉靶向基团而特异性地定位在溶酶体中,从而避免了大多数LysoTrackers所遇到的成问题的碱化作用。对大鼠肾脏冷冻切片的进一步成像分析表明,它们的组织成像深度优于广泛使用的NIR标记剂Cy5.5。

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