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Turn-on fluorescence probe integrated polymer nanoparticles for sensing biological thiol molecules

机译:开启荧光探针集成了聚合物纳米颗粒用于感测生物硫醇分子

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摘要

A “turn-on” thiol-responsive fluorescence probe was synthesized and integrated into polymeric nanoparticles for sensing intracellular thiols. There is a photo-induced electron transfer process in the off state of the probe, and this process is terminated upon the reaction with thiol compounds. Configuration interaction singles (CIS) calculation was performed to confirm the mechanism of this process. A series of sensing studies were carried out, showing that the probe-integrated nanoparticles were highly selective towards biological thiol compounds over non-thiolated amino acids. Kinetic studies were also performed to investigate the relative reaction rate between the probe and the thiolated amino acids. Subsequently, the Gibbs free energy of the reactions was explored by means of the electrochemical method. Finally, the detection system was employed for sensing intracellular thiols in cancer cells, and the sensing selectivity could be further enhanced with the use of a cancer cell-targeting ligand in the nanoparticles. This development paves a path for the sensing and detection of biological thiols, serving as a potential diagnostic tool in the future.
机译:合成了一种“开启”的硫醇反应性荧光探针,并整合到聚合物纳米颗粒中以感测细胞内的硫醇。在探针的关闭状态下存在光诱导的电子转移过程,并且该过程在与硫醇化合物反应时终止。执行配置交互单打(CIS)计算以确认该过程的机制。进行了一系列的传感研究,表明与非硫醇化氨基酸相比,探针整合的纳米粒子对生物硫醇化合物具有高度选择性。还进行了动力学研究,以研究探针与硫醇化氨基酸之间的相对反应速率。随后,通过电化学方法探索反应的吉布斯自由能。最后,将检测系统用于感测癌细胞中的细胞内硫醇,并且通过在纳米颗粒中使用靶向癌细胞的配体可以进一步提高感测选择性。这一发展为感测和检测生物硫醇铺平了道路,成为将来的潜在诊断工具。

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