Bodman Samantha E, Butler Stephen J
Department of Chemistry, Loughborough University Epinal Way, Loughborough LE11 3TU UK
Chem Sci. 2021 Jan 26;12(8):2716-2734. doi: 10.1039/d0sc05419d.
Luminescent lanthanide complexes have been actively studied as selective anion receptors for the past two decades. Ln(iii) complexes, particularly of europium(iii) and terbium(iii), offer unique photophysical properties that are very valuable for anion sensing in biological media, including long luminescence lifetimes (milliseconds) that enable time-gating methods to eliminate background autofluorescence from biomolecules, and line-like emission spectra that allow ratiometric measurements. By careful design of the organic ligand, stable Ln(iii) complexes can be devised for rapid and reversible anion binding, providing a luminescence response that is fast and sensitive, offering the high spatial resolution required for biological imaging applications. This review focuses on recent progress in the development of Ln(iii) receptors that exhibit sufficiently high anion selectivity to be utilised in biological or environmental sensing applications. We evaluate the mechanisms of anion binding and sensing, and the strategies employed to tune anion affinity and selectivity, through variations in the structure and geometry of the ligand. We highlight examples of luminescent Ln(iii) receptors that have been utilised to detect and quantify specific anions in biological media ( human serum), monitor enzyme reactions in real-time, and visualise target anions with high sensitivity in living cells.
在过去的二十年里,发光镧系配合物作为选择性阴离子受体一直受到广泛研究。镧系(III)配合物,特别是铕(III)和铽(III)的配合物,具有独特的光物理性质,这对于生物介质中的阴离子传感非常有价值,包括长的发光寿命(毫秒级),这使得时间门控方法能够消除生物分子的背景自发荧光,以及线状发射光谱,这允许进行比率测量。通过精心设计有机配体,可以设计出稳定的镧系(III)配合物用于快速和可逆的阴离子结合,提供快速且灵敏的发光响应,满足生物成像应用所需的高空间分辨率。本综述重点关注镧系(III)受体开发的最新进展,这些受体具有足够高的阴离子选择性,可用于生物或环境传感应用。我们评估阴离子结合和传感的机制,以及通过改变配体的结构和几何形状来调节阴离子亲和力和选择性所采用的策略。我们重点介绍了一些发光镧系(III)受体的实例,这些受体已被用于检测和定量生物介质(人血清)中的特定阴离子、实时监测酶反应以及在活细胞中高灵敏度地可视化目标阴离子。