Taiyuan University of Technology, 209 University Street, Jinzhong, 030600, Shanxi, China.
Mikrochim Acta. 2024 Oct 25;191(11):699. doi: 10.1007/s00604-024-06783-6.
A novel fluorescent sensor based on silver nanoparticle-carbon dot composites (Ag@CDs) has been developed for the rapid and quantitative detection of aquatic bacteria. The sensor operates on the principle of plasmon-enhanced resonance energy transfer, where the fluorescence of CDs is quenched by Ag nanoparticles and restored upon bacterial interaction due to the generation of reactive oxygen species. The Ag@CDs exhibit a linear response to bacterial concentration over the range 7 × 10 ~ 4 × 10 CFU·mL, with a low detection limit of 4 × 10 CFU·mL. The fluorescence recovery is rapid, reaching maximum intensity within 5 min. The method demonstrates high selectivity, with minimal interference from common ions and compounds found in municipal and industrial wastewater. The Ag@CDs-based 96-well plate assay for quantitative measurement of bacteria was developed. The assay's performance was further validated through the analysis of real water samples, showing a recovery of 94.0 ~ 102% for domestic wastewater and 97.6 ~ 106% for industrial wastewater. Also, Ag@CDs-based test strips assay for semi-quantitation were developed for rapid in-field aquatic bacteria detection. Ag@CDs can be conveniently integrated into 96-well plates and test strips, providing rapid on-site aquatic bacteria testing.
一种基于银纳米粒子-碳点复合材料(Ag@CDs)的新型荧光传感器已被开发用于快速定量检测水中细菌。该传感器基于等离子体增强共振能量转移原理,其中碳点的荧光被银纳米粒子猝灭,而在细菌相互作用时由于活性氧的产生而恢复。Ag@CDs 对细菌浓度在 7×104×10 CFU·mL 的范围内表现出线性响应,检测限低至 4×10 CFU·mL。荧光恢复迅速,在 5 分钟内达到最大强度。该方法表现出高选择性,对市政和工业废水中常见的离子和化合物的干扰最小。还开发了基于 Ag@CDs 的用于定量测量细菌的 96 孔板测定法。通过对实际水样的分析进一步验证了该测定法的性能,结果表明对生活污水的回收率为 94.0102%,对工业废水的回收率为 97.6~106%。此外,还开发了基于 Ag@CDs 的用于半定量的测试条测定法,用于快速现场水中细菌检测。Ag@CDs 可以方便地集成到 96 孔板和测试条中,提供快速的现场水中细菌测试。