Department of Applied Chemistry, National Yang Ming Chiao Tung University, Hsinchu 300, Taiwan.
International College of Semiconductor Technology, National Yang Ming Chiao Tung University, Hsinchu 300, Taiwan.
J Food Drug Anal. 2023 Jun 15;31(2):371-380. doi: 10.38212/2224-6614.3457.
Tetracycline (TC) is a broad-spectrum antibiotic and has been added to animal feeds to grow livestock under healthy conditions, making it important to have effective methods for rapidly detecting TC in complex samples. In this study, a novel method that uses lanthanide ions (i.e. Eu and Gd) as magnetic and sensing probes for the detection of TC from aqueous samples is explored. When dissolving Gd in tris(hydroxymethyl)aminomethane (Tris) buffer at pH 9, magnetic Gd-Tris conjugates can be readily generated. The magnetic Gd-Tris conjugates possess trapping capacity toward TC from sample solutions via the chelation of Gd and TC. Eu is used as the fluorescence sensing probe against TC on the Gd-TC conjugates via the antenna effect. The fluorescence response derived from Eu is increased with the increase of TC trapped on the Gd-based probes. The linear dynamic range against TC ranges from 20 to 320 nM, whereas the limit of detection toward TC is ~2 nM. Furthermore, the developed sensing method can be employed for the visual assay of TC with a concentration above ~0.16 μM under UV light illumination in the dark. Furthermore, we have demonstrated the applicability of the developed method to quantify TC in a chicken broth sample with complex matrix. Our developed method offers several advantages, including high sensitivity and good selectivity, for the detection of TC in complex samples.
四环素(TC)是一种广谱抗生素,已被添加到动物饲料中,以在健康的条件下养殖牲畜,因此,开发快速检测复杂样品中 TC 的有效方法非常重要。在本研究中,探索了一种使用镧系离子(即 Eu 和 Gd)作为磁性和传感探针从水溶液中检测 TC 的新方法。当在 pH 9 的三羟甲基氨基甲烷(Tris)缓冲液中溶解 Gd 时,可以很容易地生成磁性 Gd-Tris 轭合物。磁性 Gd-Tris 轭合物通过 Gd 和 TC 的螯合作用,具有从样品溶液中捕获 TC 的能力。Eu 被用作荧光传感探针,用于检测 Gd-TC 轭合物上的 TC,这是通过天线效应实现的。Eu 产生的荧光响应随着在基于 Gd 的探针上捕获的 TC 的增加而增加。对 TC 的线性动态范围从 20 到 320 nM,而对 TC 的检测限约为 2 nM。此外,该传感方法可用于在黑暗中在紫外光照射下对 TC 进行浓度高于约 0.16 μM 的可视化检测。此外,我们已经证明了所开发的方法在含有复杂基质的鸡汁样品中定量 TC 的适用性。我们开发的方法在检测复杂样品中的 TC 方面具有高灵敏度和良好选择性等优点。