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铜辅助检测食品、土壤和植物样品中的杀菌剂福美双,以及利用低细胞毒性和红色发射荧光传感器对活细胞中的汞进行比率检测。

Cu-assisted sensing of fungicide Thiram in food, soil, and plant samples and the ratiometric detection of Hg in living cells by a low cytotoxic and red emissive fluorescent sensor.

作者信息

Erdemir Serkan, Oguz Mehmet, Malkondu Sait

机构信息

Selcuk University, Science Faculty, Department of Chemistry, 42250 Konya, Turkey.

Selcuk University, Science Faculty, Department of Chemistry, 42250 Konya, Turkey.

出版信息

J Hazard Mater. 2023 Jun 15;452:131278. doi: 10.1016/j.jhazmat.2023.131278. Epub 2023 Mar 23.

Abstract

Metal ions and pesticides are extensively used in many industries and agriculture. However, they cause significant environmental pollution and various adverse health effects. Therefore, the development of sensitive and selective techniques to detect them is necessary for human health and the ecosystem. In this paper, we report a novel red-emitting fluorescence probe with a large Stokes shift (∼220 nm) based on rhodamine and isophorone units. The probe shows a ratiometric fluorescence response toward Hg ions; however, Cu ions quench the red fluorescence signal. The decomposition of the probe-Cu complex allows detection of Thiram followed by recovery of the red fluorescence signal of the probe. In addition, the probe shows a good linear response to Hg, Cu, and Thiram, with detection limits of 122.0 nM, 29.0 nM, and 72.0 nM, respectively. The practical applicability of the probe has been successfully tested in real samples. Moreover, smartphone detection and light-responsive capsule fabrication have been established, for easy and quick detection. The probe possesses very low cytotoxicity and allows visualization of Hg and Cu ions in HeLa cells. Therefore, the present probe is expected to be an effective tool assisting in easy, quick, and reliable detection of Thiram, Hg, and Cu ions.

摘要

金属离子和农药在许多工业和农业领域广泛使用。然而,它们会造成严重的环境污染并对健康产生各种不利影响。因此,开发灵敏且具选择性的检测技术对于人类健康和生态系统而言是必要的。在本文中,我们报道了一种基于罗丹明和异佛尔酮单元的新型大斯托克斯位移(约220 nm)红色发射荧光探针。该探针对汞离子呈现比率荧光响应;然而,铜离子会淬灭红色荧光信号。探针 - 铜络合物的分解使得能够检测福美双,随后探针的红色荧光信号得以恢复。此外,该探针对汞、铜和福美双呈现良好的线性响应,检测限分别为122.0 nM、29.0 nM和72.0 nM。该探针的实际适用性已在实际样品中成功测试。此外,已建立智能手机检测和光响应胶囊制备方法,以实现简便快速的检测。该探针具有极低的细胞毒性,并能够在HeLa细胞中实现汞和铜离子的可视化。因此,本探针有望成为协助简便、快速且可靠地检测福美双、汞和铜离子的有效工具。

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