Technische Universität Berlin, Chair of Food Chemistry and Toxicology, Straße des 17. Juni 135, 10623, Berlin, Germany.
Martin-Luther-Universität Halle-Wittenberg, Department of Physics, von-Danckelmann-Platz 3, 06120, Halle/Saale, Germany.
Chembiochem. 2021 Jun 2;22(11):1925-1931. doi: 10.1002/cbic.202100031. Epub 2021 Mar 18.
We report the application of a highly versatile and engineerable novel sensor platform to monitor biologically significant and toxic metal ions in live human Caco-2 enterocytes. The extended conjugation between the fluorescent porphyrin core and metal ions through aromatic phenylphosphonic acid tethers generates a unique turn off and turn on fluorescence and, in addition, shifts in absorption and emission spectra for zinc, cobalt, cadmium and mercury. The reported fluorescent probes p-H TPPA and m-H TPPA can monitor a wide range of metal ion concentrations via fluorescence titration and also via fluorescence decay curves. Cu- and Zn-induced turn off fluorescence can be differentially reversed by the addition of common chelators. Both p-H TPPA and m-H TPPA readily pass the mammalian cellular membrane due to their amphipathic character as confirmed by confocal microscopic imaging of living enterocytes.
我们报告了一种高度通用和可工程化的新型传感器平台在监测活的人 Caco-2 肠细胞中具有生物学意义和毒性的金属离子中的应用。通过芳香苯膦酸连接体将荧光卟啉核心与金属离子进行扩展共轭,为锌、钴、镉和汞生成独特的关闭和开启荧光,此外,还会使吸收和发射光谱发生位移。报告的荧光探针 p-H TPPA 和 m-H TPPA 可以通过荧光滴定以及荧光衰减曲线来监测广泛的金属离子浓度。Cu- 和 Zn- 诱导的荧光关闭可以通过添加常见的螯合剂来进行差异逆转。由于其两亲性,p-H TPPA 和 m-H TPPA 很容易通过哺乳动物细胞膜,这一点通过对活肠细胞的共焦显微镜成像得到了证实。