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Fluorescent Thermometers for Dual-Emission-Wavelength Measurements: Molecular Engineering and Application to Thermal Imaging in a Microsystem

机译:用于双发射波长测量的荧光温度计:分子工程及其在微系统中的热成像应用

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摘要

To facilitate thermal imaging, particularly in microdevices, one has to favor molecular thermometers in which the response is independent of the probe concentration and of the observation setup imperfections. Hence, this paper introduces two temperature fluorescent probes for ratio-metric dual-emission-wavelength measurements in aqueous solutions. They are based on a nonathermal chemical reaction, either a conformational transition or a protonation, that induces a modification of their emission spectra as the temperature changes. Relying on both a straightforward theoretical analysis and thorough photo-physical, thermodynamic, and kinetic investigations, we demonstrate how the flexible design of these two thermometers can be optimized to face applications with various requirements in terms of operating temperature and wavelength ranges as well as temporal resolution. For instance, the present molecules, which can be used between 5 and 35 deg C, provide a relative sensitivity up to approx 9 X 10~(-2) K~(-1) and milli- to microsecond response times. Finally, we utilize a two-color molecular beacon, a probe belonging to the first series of thermometers, to image temperature profiles in a microfluidic cell heated by a resistive strip. The ratiometric analysis of the fluorescence emission at two different wavelengths is performed on a widely available dual-view microscope, illustrating both the simplicity and reliability of the thermal mapping protocol.
机译:为了促进热成像,特别是在微型设备中,必须使用分子温度计,其响应独立于探针浓度和观察缺陷。因此,本文介绍了两种用于在水溶液中按比例测量双发射波长的温度荧光探针。它们基于非热化学反应,无论是构象转变还是质子化,都会随着温度的变化而引起其发射光谱的改变。依靠简单的理论分析以及全面的光物理,热力学和动力学研究,我们证明了如何优化这两种温度计的灵活设计,以应对在工作温度,波长范围以及时间方面有各种要求的应用解析度。例如,可以在5到35摄氏度之间使用的本分子提供高达9 X 10〜(-2)K〜(-1)的相对灵敏度以及毫秒级到微秒级的响应时间。最后,我们利用一种双色分子信标(属于第一系列温度计的探针)来成像由电阻条加热的微流控单元中的温度曲线。在广泛使用的双视角显微镜上对两种不同波长的荧光发射进行比例分析,从而说明了热图操作规程的简单性和可靠性。

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