Department of Pharmaceutical Sciences, Graduate school of Kyushu University, 3-1-1, Maidashi, Higashi-ku, Fukuoka 812-8152 (Japan), Fax: (+81) 926426601.
Chemistry. 2014 Feb 17;20(8):2184-92. doi: 10.1002/chem.201304181. Epub 2014 Jan 23.
Non-coordinative interactions between a metal ion and the aromatic ring of a fluorophore can act as a versatile sensing mechanism for the detection of metal ions with a large emission change of fluorophores. We report the design of fluorescent probes based on arene-metal-ion interactions and their biological applications. This study found that various probes having different fluorophores and metal binding units displayed significant emission redshift upon complexation with metal ions, such as Ag(I), Cd(II), Hg(II), and Pb(II). X-ray crystallography of the complexes confirmed that the metal ions were held in close proximity to the fluorophore to form an arene-metal-ion interaction. Electronic structure calculations based on TDDFT offered a theoretical basis for the sensing mechanism, thus showing that metal ions electrostatically modulate the energy levels of the molecular orbitals of the fluorophore. A fluorescent probe was successfully applied to the ratiometric detection of the uptake of Cd(II) ions and hydrogen sulfide (H2S) in living cells. These results highlight the utility of interactions between arene groups and metal ions in biological analyses.
金属离子与荧光团芳环之间的非协同相互作用可以作为一种通用的传感机制,用于检测金属离子,荧光团的发射变化很大。我们报告了基于芳环-金属离子相互作用的荧光探针的设计及其在生物学中的应用。这项研究发现,具有不同荧光团和金属结合单元的各种探针在与金属离子(如 Ag(I)、Cd(II)、Hg(II)和 Pb(II))络合时,显示出显著的发射红移。配合物的 X 射线晶体学证实,金属离子与荧光团紧密结合,形成芳环-金属离子相互作用。基于 TDDFT 的电子结构计算为传感机制提供了理论基础,表明金属离子静电调节荧光团分子轨道的能级。荧光探针成功应用于细胞内 Cd(II)离子和硫化氢 (H2S) 的比率检测。这些结果突出了芳基基团和金属离子之间相互作用在生物分析中的实用性。