Department of Biotechnology, Graduate School of Natural and Applied Sciences, Konya Food and Agriculture University, 42080, Konya, Turkey.
Department of Metallurgical and Materials Engineering, Faculty of Engineering and BITAM-Science and Technology Research and Application Center, Necmettin Erbakan University, 42090, Konya, Turkey.
Top Curr Chem (Cham). 2023 Sep 7;381(5):28. doi: 10.1007/s41061-023-00438-5.
BODIPY (4-bora-3a,4a-diaza-s-indacene) dyes are regarded as highly useful compounds due to their rich photophysical properties, stability, and ease of functionalization. In recent years, hot topics studied with this class of compounds are targeted photodynamic therapy, photothermal therapy, fluorescent bioimaging agents, structural modification of the BODIPY core, synthesis of BODIPY analogs, and BODIPY-based supramolecular constructs. This review covers the advances in BODIPY structures substituted with additional carbon-nitrogen double bonds, namely imines, hydrazones, oximes, and related derivatives for various applications. Works based on fluorescent indicators of anions, cations, and neutral molecules are included in this review. In addition, the use of such structures for pharmaceutical applications, photodynamic therapy, fluorescent switches, and fluorescent building blocks are also investigated. In addition to covering the major literature within the mentioned subclass, design principles, working mechanisms, and outlooks are also provided to enlighten forthcoming promising efforts. With this work, we aim to provide insights about the synthesis, photophysical properties, contribution of C=N bonds to a class of dye, and possible areas of use and stimulate researchers to present new ideas and overcome the current problems using these derivatives.
BODIPY(4-硼-3a,4a-二氮杂-s-茚)染料因其丰富的光物理性质、稳定性和易于功能化而被认为是非常有用的化合物。近年来,该类化合物的热门研究课题包括靶向光动力疗法、光热疗法、荧光生物成像剂、BODIPY 核心的结构修饰、BODIPY 类似物的合成以及基于 BODIPY 的超分子构建体。本综述涵盖了具有额外碳-氮双键的 BODIPY 结构的进展,即亚胺、腙、肟和相关衍生物,用于各种应用。本综述包括基于阴离子、阳离子和中性分子荧光指示剂的工作。此外,还研究了此类结构在药物应用、光动力疗法、荧光开关和荧光砌块中的应用。除了涵盖上述子类的主要文献外,还提供了设计原则、工作机制和展望,以启发即将到来的有前途的工作。通过这项工作,我们旨在提供关于合成、光物理性质、C=N 键对一类染料的贡献以及这些衍生物可能的用途的见解,并激发研究人员提出新的想法并克服当前的问题。