Gou Zhiming, Zhang Xiaomei, Zuo Yujing, Lin Weiying
Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, School of Materials Science and Engineering, University of Jinan, Shandong 250022, China.
Polymers (Basel). 2019 Jul 25;11(8):1235. doi: 10.3390/polym11081235.
A series of poly(thioether)s containing silicon atom with unconventional fluorescence were synthesized via successive thiol click reaction at room temperature. Although rigid π-conjugated structure did not exist in the polymer chain, the poly(thioether)s exhibited excellent fluorescent properties in solutions and showed visible blue fluorescence in living cells. The strong blue fluorescence can be attributed to the aggregation of lone pair electron of heteroatom and coordination between heteroatom and Si atom. In addition, the responsiveness of poly(thioether) to metal ions suggested that the selectivity of poly(thioether) to Fe ion could be enhanced by end-modifying with different sulfhydryl compounds. This study further explored their application in cell imaging and studied their responsiveness to Fe in living cells. It is expected that the described synthetic route could be extended to synthesize novel poly(thioether)s with superior optical properties. Their application in cell imaging and ion detection will broaden the range of application of poly(thioether)s.
通过在室温下连续进行硫醇点击反应,合成了一系列具有非常规荧光的含硅聚硫醚。尽管聚合物链中不存在刚性π共轭结构,但聚硫醚在溶液中表现出优异的荧光性能,并在活细胞中呈现出可见的蓝色荧光。强烈的蓝色荧光可归因于杂原子孤对电子的聚集以及杂原子与硅原子之间的配位作用。此外,聚硫醚对金属离子的响应性表明,通过用不同的巯基化合物进行末端修饰,可以提高聚硫醚对铁离子的选择性。本研究进一步探索了它们在细胞成像中的应用,并研究了它们在活细胞中对铁的响应性。预计所描述的合成路线可以扩展到合成具有优异光学性能的新型聚硫醚。它们在细胞成像和离子检测中的应用将拓宽聚硫醚的应用范围。