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Hemicyanine-based High Resolution Ratiometric near-Infrared Fluorescent Probe for Monitoring pH Changes in Vivo

机译:基于半菁的高分辨率比率式近红外荧光探针,用于监测体内pH变化

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Intracellular pH is an important parameter associated with cellular behaviors and pathological conditions. Quantitative sensing pH and monitoring its changes by near-infrared (NIR) fluorescence imaging with high resolution in living systems are essential but challenging due to the lack of effective probes. To achieve good adaptability, in this study, a class of resolution-tunable ratiometric NIR fluorescent probes, which possess a stable NIR hemicyanine skeleton bearing different substituents, are rationally designed and synthesized, enabling detection through noninvasive optical imaging of organisms. Based on the protonation/deprotonation of the hydroxy group, a marked NIR emission shift provides a ratio signal in response to pH. Meanwhile, two states exhibit good photostability, sensitivity and reversibility, conducive to longtime monitoring of persistent pH changes without disturbance of other biological active species. Among the series, NIR-Ratio-BTZ modified with an electron-withdrawing substituent of benzothiazole exhibited the largest emission shift of about 76 nm from 672 to 748 nm with the pH environment changing from acidic to basic, which could be considered as a good candidate for high resolution pH imaging in live cells, tissues and organisms. Moreover, NIR-Ratio-BTZ has an ideal pK(a) value (pK(a) approximate to 7.2) for monitoring the minor fluctuations of physiological pH near neutrality. The ratiometric fluorescence measurement is beneficial to ensure the accuracy of quantitative measuring pH changes, as well as the real-time monitoring pH-related physiological effects both in living cells and living mice. The results demonstrate that NIR-Ratio-BTZ is a highly sensitive ratiometric pH probe in vivo, giving it potential for biological applications.
机译:细胞内pH是与细胞行为和病理状况相关的重要参数。定量检测pH值并通过近红外(NIR)荧光成像在生活系统中进行高分辨率监测其变化是必不可少的,但由于缺乏有效的探针而具有挑战性。为了获得良好的适应性,在本研究中,合理设计和合成了一类分辨率可调的比例NIR荧光探针,该探针具有稳定的NIR半菁骨架,带有不同的取代基,可以通过生物的无创光学成像进行检测。基于羟基的质子化/去质子化,明显的NIR发射位移提供了响应pH值的比率信号。同时,两个状态表现出良好的光稳定性,敏感性和可逆性,有利于长期监测持续的pH值变化,而不会干扰其他生物活性物种。在该系列中,用苯并噻唑的吸电子取代基修饰的NIR-Ratio-BTZ在672-748 nm范围内表现出最大的发射位移,pH环境从酸性变为碱性,可以认为是一个很好的选择。用于活细胞,组织和生物体的高分辨率pH成像。而且,NIR-比率-BTZ具有理想的pK(a)值(pK(a)约为7.2),用于监测接近中性的生理pH的微小波动。比例荧光测量有利于确保定量测量pH变化的准确性,以及实时监测活细胞和活小鼠中与pH相关的生理效应。结果表明,NIR-Ratio-BTZ是体内高度敏感的比例式pH探针,具有生物应用潜力。

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