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Curcumin-based polarity fluorescent probes: Design strategy and biological applications

机译:姜黄素的极性荧光探针:设计策略和生物应用

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Polarity is a crucial characteristic of indispensable organelles, which has been indicated to be closely related to many pathological and biological processes. Hence, a novel design strategy of curcumin-based polarity fluorescent probes was presented. Curcumin attracted much attention due to its environment-sensitivity and optical properties. We reformed the structure of curcumin by attaching a galactose moiety that was used to increase the water solubility and regulate the probe working mode. Furthermore, we also introduced a diethylamino group, which played a substantial role in adjusting the polarity specificity and sensitivity of the probes. We finally screened two polarity-specific fluorescent probes 0301 and 0302. Both probes exhibited remarkable changes in fluorescence from red to green upon increasing polarity of environment. Using 0301 in confocal imaging, we obtained a clear and exact view of lysosomal polarity in different cells, suggesting that the lysosomal polarity in normal cells is higher than that in cancer cells. Also, we use 0301 to monitor variations in lysosomal polarity in live cells induced by dimethylsulfoxide and sucrose, indicating that our probe could specifically monitor the changes of polarity in live cells to elucidate polarity-related biological processes.
机译:极性是必不可少的细胞器的至关重要的特征,这已被表明与许多病理和生物过程密切相关。因此,提出了一种新颖的姜黄素基极性荧光探针的设计策略。由于其环境敏感性和光学性质,姜黄素引起了很多关注。通过连接用于增加水溶性的半乳糖部分并调节探针工作模式,通过连接半乳糖部分改造姜黄素的结构。此外,我们还引入了一种二乙基氨基,其在调整探针的极性特异性和敏感度方面发挥了重要作用。我们最终筛选了两个极性特异性荧光探针0301和0302.在增加环境极性时,两种探针均表现出从红色到绿色的荧光变化。在共聚焦成像中使用0301,我们在不同细胞中获得了透明和精确的溶酶体极性观察,表明正常细胞中的溶酶体极性高于癌细胞中的溶酶体极性。此外,我们使用0301监测二甲基磺氧基和蔗糖诱导的活细胞中溶酶体极性的变化,表明我们的探针可以特别监测活细胞中极性的变化,以阐明阐明与极性相关的生物过程。

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