Zhang Weijie, Huo Fangjun, Yin Caixia
Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Key Laboratory of Materials for Energy, Conversion and Storage of Shanxi Province, Institute of Molecular Science, Shanxi University, Taiyuan 030006, China.
J Mater Chem B. 2018 Nov 21;6(43):6919-6929. doi: 10.1039/c8tb02205d. Epub 2018 Oct 12.
Fluorescence imaging is advancing quickly through the discovery of new fluorescent molecules and the invention of various strategies that can optimize and detect the fluorescence of various fluorophores. Dicyano-based fluorescent materials, including DCM (dicyanomethylene-4Hpyran) and DCO (dicyanoisophorone), have attracted great attention in recent years due to their excellent photophysical properties, outstanding biocompatibility, and low toxicity to living systems. In this review, we describe the principal strategies to create dicyano-based chemosensors through synthetic methods and the current photophysical understanding of these compounds. Then, we discuss efforts to target small-molecule compounds for imaging cellular events and studying biological processes. Additionally, dicyan-based materials applied to diagnostic tools, drug delivery and potential therapeutics have been described in detail. Finally, we conclude by discussing the opportunities and challenges of this class of materials, which may act as precision tools in the areas of biology and medicine.
通过发现新的荧光分子以及发明各种能够优化和检测各种荧光团荧光的策略,荧光成像技术正在迅速发展。基于二氰基的荧光材料,包括二氰基亚甲基-4H-吡喃(DCM)和二氰基异佛尔酮(DCO),近年来因其优异的光物理性质、出色的生物相容性以及对生物系统的低毒性而备受关注。在本综述中,我们描述了通过合成方法创建基于二氰基的化学传感器的主要策略以及对这些化合物当前的光物理理解。然后,我们讨论了针对小分子化合物用于细胞事件成像和研究生物过程的相关工作。此外,还详细描述了基于二氰基的材料在诊断工具、药物递送和潜在治疗方面的应用。最后,我们通过讨论这类材料的机遇和挑战来进行总结,这类材料可能在生物学和医学领域充当精密工具。