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Spironaphthoxazine switchable dyes for biological imaging

机译:用于生物成像的螺萘并恶嗪可转换染料

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Recent developments in super-resolution microscopy have significantly expanded the requirements for switchable dyes, leading to demand for specially designed molecular switches. We report the synthesis and characterization of a spironaphthoxazine photochromic switch (a derivative of palatinate purple) displaying high photoconversion (85–95%) under readily accessible 405 nm light, broad absorption in the visible, and excellent fatigue resistance. The indole substituent on this spironaphthoxazine is twisted out of conjugation with the naphthalene unit, yet it is crucial for activation with visible light. The open colored merocyanine form of the spironaphthoxazine reverts to the closed form with a lifetime of 4.7 s in dichloromethane at 20 °C; this thermal reversion is even faster in more polar solvents. The photochemical quantum yields for ring-opening and ring-closing are approximately 8% and 1%, respectively, in dichloromethane. The ring-opening and ring-closing reactions have been characterized by time-resolved infrared and transient absorption spectroscopies. Ring opening occurs rapidly ( τ = 2.1 ns) and efficiently (~90%) from the singlet excited state to form an intermediate (assigned as a cisoid merocyanine), which returns to the closed ground state ( τ = 4.5 ns) in competition with relaxation to the transoid open form ( τ = 40 ns). Photochemical ring closing is a faster and simpler process: the excited state proceeds to the closed spirooxazine with a time constant of 0.28 ns. This photochromic switch can be used in conjunction with commercial fluorescent dyes to create a small-molecule switchable fluorescent dyad that shows high contrast and good fatigue resistance in living cells. These properties make the dyads suitable for application in RESOLFT microscopy.
机译:超分辨率显微镜的最新发展已大大扩展了对可转换染料的要求,从而导致了对专门设计的分子开关的需求。我们报告了螺萘并恶嗪光致变色开关(帕拉丁酸盐紫色的衍生物)的合成和表征,该光致变色开关在易于获得的405 nm光下显示出高的光转化率(85-95%),在可见光中具有广泛的吸收性,并且具有出色的抗疲劳性。螺旋萘并恶嗪上的吲哚取代基与萘单元没有共轭键,但对于可见光激活至关重要。 spironaphthoxazine的打开的彩色花菁形式恢复为闭合形式,在20°C下的二氯甲烷中的寿命为4.7 s;在极性更大的溶剂中,这种热转化速度甚至更快。在二氯甲烷中,开环和闭环的光化学量子产率分别约为8%和1%。开环和闭环反应的特征在于时间分辨的红外光谱和瞬态吸收光谱。开环快速发生(τ= 2.1 ns),并从单重态激发态有效地(〜90%)形成中间体(称为顺式花色素),并与竞争性竞争而返回到封闭的基态(τ= 4.5 ns)。弛豫成梯形开放形式(τ= 40 ns)。光化学环的闭合是一个更快,更简单的过程:激发态以0.28 ns的时间常数进入闭合的螺恶嗪。该光致变色开关可与市售荧光染料一起使用,以创建可在活细胞中显示出高对比度和良好抗疲劳性的小分子可切换荧光二色性。这些特性使二分体适用于RESOLFT显微镜。

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