State Key Laboratory of Supramolecular, Structure and Materials, Jilin University, Changchun, 130012, P. R. China.
Small. 2016 Dec;12(47):6613-6622. doi: 10.1002/smll.201601544. Epub 2016 Sep 26.
Aggregation-induced emission (AIE) probes have shown great potential applications in fluorescent sensing of biomolecules, and the integration of AIE probe and graphene oxide (GO) attracts intense interest in developing new tools for label-free and "turn-on" fluorescent biomolecular analysis. Herein, an ultrasensitive label-free and "turn-on" DNA sensing is realized by tuning the supramolecular interactions of AIE probe and GO with DNA. The investigation of supramolecular interactions of AIE probes and GO with DNA demonstrate that AIE probe with short alkyl chains substitute shows highest binding affinity with DNA strand, and GO with low oxidation degree possesses strong binding interactions to ssDNA and the highest fluorescence quenching efficiency. As a result, the optimized AIE probes and GO-based fluorescent sensor can selectively detect the target DNA sequence and exhibits the detection limitation as low as 0.17 × 10 m. It is believed that the research efforts will provide an efficient approach to improve the performance of DNA sensing assay and an indepth understanding of the supramolecular interactions of AIE probes and GO with DNA, and thus facilitate their extended applications in biosensors and biomedicine.
聚集诱导发光(AIE)探针在生物分子的荧光传感中显示出巨大的应用潜力,而 AIE 探针和氧化石墨烯(GO)的结合激发了开发用于无标记和“开启”荧光生物分子分析的新工具的强烈兴趣。在此,通过调节 AIE 探针和 GO 与 DNA 的超分子相互作用,实现了超灵敏的无标记和“开启”DNA 传感。对 AIE 探针和 GO 与 DNA 的超分子相互作用的研究表明,具有短烷基链取代的 AIE 探针显示出与 DNA 链最高的结合亲和力,而低氧化度的 GO 对 ssDNA 具有强的结合相互作用和最高的荧光猝灭效率。因此,优化的 AIE 探针和基于 GO 的荧光传感器可以选择性地检测靶 DNA 序列,检测限低至 0.17×10m。相信这项研究工作将为提高 DNA 传感分析的性能提供一种有效的方法,并深入了解 AIE 探针和 GO 与 DNA 的超分子相互作用,从而促进它们在生物传感器和生物医学中的广泛应用。