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基于芳烃-金属离子相互作用的多色比率荧光金属离子传感平台。

A multicolor and ratiometric fluorescent sensing platform for metal ions based on arene-metal-ion contact.

作者信息

Kanegae Anna, Takata Yusuke, Takashima Ippei, Uchinomiya Shohei, Kawagoe Ryosuke, Usui Kazuteru, Yamashita Akira, Wongkongkatep Jirarut, Sugimoto Manabu, Ojida Akio

机构信息

Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.

Laboratory of Bioorganic & Natural Products Chemistry, Kobe Pharmaceutical University, Kobe, Japan.

出版信息

Commun Chem. 2021 Jul 6;4(1):104. doi: 10.1038/s42004-021-00541-y.

Abstract

Despite continuous and active development of fluorescent metal-ion probes, their molecular design for ratiometric detection is restricted by the limited choice of available sensing mechanisms. Here we present a multicolor and ratiometric fluorescent sensing platform for metal ions based on the interaction between the metal ion and the aromatic ring of a fluorophore (arene-metal-ion, AM, coordination). Our molecular design provided the probes possessing a 1,9-bis(2'-pyridyl)-2,5,8-triazanonane as a flexible metal ion binding unit attached to a tricyclic fluorophore. This architecture allows to sense various metal ions, such as Zn(II), Cu(II), Cd(II), Ag(I), and Hg(II) with emission red-shifts. We showed that this probe design is applicable to a series of tricyclic fluorophores, which allow ratiometric detection of the metal ions from the blue to the near-infrared wavelengths. X-ray crystallography and theoretical calculations indicate that the coordinated metal ion has van der Waals contact with the fluorophore, perturbing the dye's electronic structure and ring conformation to induce the emission red-shift. A set of the probes was useful for the differential sensing of eight metal ions in a one-pot single titration via principal component analysis. We also demonstrate that a xanthene fluorophore is applicable to the ratiometric imaging of metal ions under live-cell conditions.

摘要

尽管荧光金属离子探针一直在持续且积极地发展,但其用于比率检测的分子设计受到可用传感机制选择有限的限制。在此,我们基于金属离子与荧光团的芳环之间的相互作用(芳烃 - 金属离子,AM,配位),提出了一种用于金属离子的多色比率荧光传感平台。我们的分子设计提供了一种探针,其具有1,9 - 双(2'-吡啶基)-2,5,8 - 三氮杂壬烷作为连接到三环荧光团的灵活金属离子结合单元。这种结构能够检测各种金属离子,如Zn(II)、Cu(II)、Cd(II)、Ag(I)和Hg(II),且发射波长发生红移。我们表明这种探针设计适用于一系列三环荧光团,可实现从蓝光到近红外波长的金属离子比率检测。X射线晶体学和理论计算表明,配位的金属离子与荧光团存在范德华接触,扰乱了染料的电子结构和环构象,从而导致发射红移。通过主成分分析,一组探针可用于在单罐单次滴定中对八种金属离子进行差异传感。我们还证明了一种呫吨荧光团适用于活细胞条件下金属离子勺比率成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/668b/9814090/c1e948d4c4de/42004_2021_541_Fig1_HTML.jpg

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