Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK.
Angew Chem Int Ed Engl. 2021 Mar 15;60(12):6230-6241. doi: 10.1002/anie.202008075. Epub 2020 Dec 28.
Polymethine cyanine dyes have been widely recognized as promising chemical tools for a range of life science and biomedical applications, such as fluorescent staining of DNA and proteins in gel electrophoresis, fluorescence guided surgery, or as ratiometric probes for probing biochemical pathways. The photophysical properties of such dyes can be tuned through the synthetic modification of the conjugated backbone, for example, by altering aromatic cores or by varying the length of the conjugated polymethine chain. Alternative routes to shaping the absorption, emission, and photostability of dyes of this family are centered around the chemical modifications on the polymethine chain. This Minireview aims to discuss strategies for the introduction of substituents in the meso-position, their effect on the photophysical properties of these dyes and some structure-activity correlations which could help overcome common limitations in the state of the art in the synthesis.
聚甲川菁染料已被广泛认为是一系列生命科学和生物医学应用的有前途的化学工具,例如在凝胶电泳中荧光染色 DNA 和蛋白质、荧光引导手术,或作为探测生化途径的比率探针。通过对共轭主链进行合成修饰,例如通过改变芳环核或改变共轭聚甲川链的长度,可以调整此类染料的光物理性质。改变该家族染料的吸收、发射和光稳定性的替代途径集中在聚甲川链上的化学修饰上。本综述旨在讨论在中位引入取代基的策略,及其对这些染料光物理性质的影响,以及一些结构-活性相关性,这些相关性可能有助于克服该领域现有技术在合成方面的常见局限性。