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Unravelling the effect of temperature on viscosity-sensitive fluorescent molecular rotors

机译:揭示温度对粘度敏感型荧光分子转子的影响

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摘要

Viscosity and temperature variations in the microscopic world are of paramount importance for diffusion and reactions. Consequently, a plethora of fluorescent probes have evolved over the years to enable fluorescent imaging of both parameters in biological cells. However, the simultaneous effect of both temperature and viscosity on the photophysical behavior of fluorophores is rarely considered, yet unavoidable variations in temperature can lead to significant errors in the readout of viscosity and vice versa. Here we examine the effect of temperature on the photophysical behavior of three classes of viscosity-sensitive fluorophores termed 'molecular rotors'. For each of the fluorophores we decouple the effect of temperature from the effect of viscosity. In the case of the conjugated porphyrin dimer, we demonstrate that, uniquely, simultaneous dual-mode lifetime and intensity measurements of this fluorophore can be used for measuring both viscosity and temperature concurrently.
机译:微观世界中的粘度和温度变化对于扩散和反应至关重要。因此,多年来,已经开发了许多荧光探针以使生物细胞中两个参数的荧光成像成为可能。然而,很少考虑温度和粘度对荧光团的光物理行为的同时影响,但是不可避免的温度变化会导致粘度读数的显着误差,反之亦然。在这里,我们研究了温度对三类称为“分子转子”的粘度敏感荧光团的光物理行为的影响。对于每种荧光团,我们将温度的影响与粘度的影响分开。在共轭卟啉二聚体的情况下,我们证明,该荧光团的同时双模寿命和强度测量可用于同时测量粘度和温度。

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