Department of Chemistry and MedChem Program, Life Sciences Institude, National University of Singapore, 3 Science Drive 3, Singapore117543.
Chem Soc Rev. 2014 Apr 21;43(8):2402-11. doi: 10.1039/c3cs60368g. Epub 2014 Feb 11.
"Aggregation-caused signal change" is a well-established mechanism by now and has been widely used as the basis for optical probe and sensor development. Compared to aggregation, its reverse process, disaggregation, has received much less attention and is not properly discussed in the literature so far. With the less established paradigm or mechanism, although some of the reported sensors and probes seem to work through disaggregation phenomena, the proper interpretation of the results and applying the concept to novel probe development is seriously hampered. The process from aggregation to disaggregation generally causes a recovery or enhancement of fluorescence signals, and thus provides an interesting new path to design "turn-on" probes. This tutorial review will provide the balanced comparison between aggregation and disaggregation mechanism, and focuses on the less explored advantages of "disaggregation" as a novel sensing mechanism and its recent applications in probe development.
“聚集引起的信号变化”是一种现已确立的机制,并且已被广泛用作光学探针和传感器开发的基础。与聚集相比,其相反过程解聚集受到的关注要少得多,到目前为止,文献中尚未对其进行适当的讨论。由于该机制尚未得到充分证实,尽管一些报道的传感器和探针似乎通过解聚集现象起作用,但对结果的正确解释以及将该概念应用于新型探针开发受到严重阻碍。从聚集到解聚集的过程通常会恢复或增强荧光信号,因此为设计“开启”探针提供了一条有趣的新途径。本教程综述将在聚集和解聚集机制之间提供平衡的比较,并重点介绍作为一种新颖的传感机制的“解聚集”的优势及其在探针开发中的最新应用。