Hunan Province Cooperative Innovation Center for Molecular Target New Drug Study, School of Pharmaceutical Science, Hengyang Medical School, University of South China, Hengyang, 421001, Hunan, China.
Hunan Province Cooperative Innovation Center for Molecular Target New Drug Study, School of Pharmaceutical Science, Hengyang Medical School, University of South China, Hengyang, 421001, Hunan, China.
Anal Chim Acta. 2023 Oct 23;1279:341837. doi: 10.1016/j.aca.2023.341837. Epub 2023 Sep 25.
The emergence of "superbugs" due to antibiotics overuse poses a significant threat to human health and security. The development of sensitive and effective antibiotics detection is undoubtedly a prerequisite for addressing antibiotics overuse-associated issues. However, current techniques for monitoring antibiotics typically require costly equipment and well-trained professionals. Hence, we developed herein a rapid, instrument-free, and on-site detection method for antibiotic residues such as norfloxacin (NOR) based on a ratiometric sensing platform utilizing "on-off-on" response properties of polychromatic fluorescence for direct visual quantitative NOR analysis. Specifically, this platform integrated iron ions (Fe)-chelated blue carbon dots (BCDs) for signal sensing and red carbon dots (RCDs) as an internal reference. The sensor mechanism is selective quenching of BCDs' blue fluorescence by Fe via an inner filter effect with unaffected RCDs' red fluorescence. Further NOR addition led to competitive binding with BCDs due to Fe shedding from the BCDs' surface for a recovered blue fluorescence signal. Notably, the ratiometric fluorescence sensor demonstrated rapid and highly sensitive NOR detection in a concentration range of 1-70 μM with an impressive detection limit of 6.84 nM. The ratiometric fluorescence sensing platform was constructed by integrating smartphone and paper-based strategies, which exhibited exceptional sensitivity, selectivity, and rapid response for portable, instrument-free, visual quantification of NOR in real samples.
由于抗生素过度使用而出现的“超级细菌”,对人类健康和安全构成了重大威胁。开发灵敏有效的抗生素检测方法无疑是解决抗生素过度使用相关问题的前提条件。然而,目前监测抗生素的技术通常需要昂贵的设备和经过专业培训的人员。因此,我们基于多色荧光的“开-关-开”响应特性,开发了一种快速、无仪器、现场检测抗生素残留(如诺氟沙星(NOR))的比率传感平台,可用于直接可视化定量 NOR 分析。具体来说,该平台集成了铁离子(Fe)螯合的蓝色碳点(BCDs)用于信号传感和红色碳点(RCDs)作为内参。传感器机制是通过内滤效应选择性猝灭 BCDs 的蓝色荧光,而不受 RCDs 红色荧光的影响。进一步加入 NOR 会导致与 BCDs 的竞争结合,因为 Fe 从 BCDs 表面脱落,从而恢复蓝色荧光信号。值得注意的是,比率荧光传感器在 1-70 μM 的浓度范围内实现了快速且高灵敏度的 NOR 检测,检测限低至 6.84 nM。比率荧光传感平台通过整合智能手机和基于纸张的策略进行构建,在实际样品中对 NOR 进行便携式、无仪器、可视化定量分析时,表现出了出色的灵敏度、选择性和快速响应能力。