Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, PR China.
Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, PR China.
J Inorg Biochem. 2017 Dec;177:300-312. doi: 10.1016/j.jinorgbio.2017.07.001. Epub 2017 Jul 4.
Copper chemistry has been capitalized on in a wide spectrum of biological events. The central importance of copper in biology lies in the diverse chemical reactivity of the redox-active transition metal ranging from electron transfer, small molecule binding and activation, to catalysis. In addition to its many different roles in natural biological systems, the diverse chemical reactivity of copper also represents a rich opportunity and resource to develop synthetic bioanalytical tools for the study of biologically important species and molecules. In this mini-review, fluorescent probes featuring a specific copper-based chemical reaction to selectively detect a biologically relevant analyte will be discussed. In particular, fluorescent probes for sensing labile copper ions, amino acids and small reactive species will be highlighted. The chemical principles, advantages and limitations of the different types of copper-mediated chemical reactions in these fluorescent probes will be emphasized.
铜化学在广泛的生物事件中得到了充分利用。铜在生物学中的核心重要性在于氧化还原活性过渡金属的多种化学反应性,包括电子转移、小分子结合和激活,以及催化。除了在天然生物系统中具有许多不同的作用外,铜的多种化学反应性也为开发用于研究重要生物物种和分子的合成生物分析工具提供了丰富的机会和资源。在这篇迷你综述中,将讨论具有特定基于铜的化学反应的荧光探针,以选择性检测与生物学相关的分析物。特别强调用于检测不稳定铜离子、氨基酸和小反应性物种的荧光探针。将强调这些荧光探针中不同类型的铜介导化学反应的化学原理、优点和局限性。