Department of Chemistry, Femtonics Ltd., Tűzoltó utca 59, H-1094 Budapest, Hungary.
Hevesy György PhD School of Chemistry, Eötvös Loránd University, Pázmány Péter sétány 1/A, H-1117 Budapest, Hungary.
Int J Mol Sci. 2024 Mar 20;25(6):3504. doi: 10.3390/ijms25063504.
The few commercially available chemosensors and published probes for in vitro Zn detection in two-photon microscopy are compromised by their flawed spectroscopic properties, causing issues in selectivity or challenging multistep syntheses. Herein, we present the development of an effective small molecular GFP chromophore-based fluorescent chemosensor with a 2,2'-bipyridine chelator moiety (GFZnP BIPY) for Zn detection that has straightforward synthesis and uncompromised properties. Detailed experimental characterizations of the free and the zinc-bound compounds within the physiologically relevant pH range are presented. Excellent photophysical characteristics are reported, including a 53-fold fluorescence enhancement with excitation and emission maxima at 422 nm and 492 nm, respectively. A high two-photon cross section of 3.0 GM at 840 nm as well as excellent metal ion selectivity are reported. In vitro experiments on HEK 293 cell culture were carried out using two-photon microscopy to demonstrate the applicability of the novel sensor for zinc bioimaging.
目前市售的用于双光子显微镜下体外 Zn 检测的化学传感器和已发表的探针,由于其光谱性质存在缺陷,在选择性方面存在问题,或者合成步骤复杂。在此,我们开发了一种有效的小分子 GFP 生色团荧光化学传感器,带有 2,2'-联吡啶螯合剂部分(GFZnP BIPY),可用于 Zn 检测,具有简单的合成方法和无损的特性。在生理相关的 pH 范围内,对游离态和锌结合态化合物进行了详细的实验特性描述。报告了出色的光物理特性,包括激发和发射最大值分别为 422nm 和 492nm 时荧光增强 53 倍。报道了高双光子截面为 3.0 GM 的 840nm 以及出色的金属离子选择性。通过双光子显微镜对 HEK 293 细胞培养进行了体外实验,以证明新型传感器在锌生物成像中的适用性。