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Silver nanoparticles inkjet-printed flexible biosensor for rapid label-free antibiotic detection in milk

机译:银纳米颗粒喷墨印刷的柔性生物传感器,可快速检测牛奶中的无标签抗生素

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摘要

Inkjet printing is an established technology that has been revisited in recent years for the low-cost and easy production of electrical sensing and biosensing systems. With this technique, it is possible to produce flexible microsystems on eco-compatible substrates such as polymers and paper. In this sense, we investigated the printing performances of a common office inkjet printer and of a commercial conducting ink, to produce aptamer-based electrochemical biosensors for antibiotics detection. During our analysis we characterized both the morphological and electrical properties of the printed electrodes, considering also their stability over time and tuning all the parameters to obtain reproducible micrometric systems.The produced devices proved to be able to undergo aptamer functionalization and to detect Ampicillin, a common used antibiotic, in few minutes with a LOD of 10 mu g/ml in milk. Therefore, in this preliminary work we demonstrated the feasibility of low-cost customized inkjet-printed biosensors, and their possible use to prevent both antibiotic contaminations and antibiotic resistance development.
机译:喷墨打印是一项成熟的技术,近年来,它已以低成本和易于生产的电子传感和生物传感系统进行了重新审视。利用这种技术,可以在生态兼容的基材(例如聚合物和纸张)上生产柔性微系统。从这个意义上讲,我们研究了普通办公室喷墨打印机和商业导电油墨的印刷性能,以生产用于抗菌素检测的基于适体的电化学生物传感器。在我们的分析中,我们对印刷电极的形貌和电学特性进行了表征,同时考虑了其随时间的稳定性并调整了所有参数以获得可重现的测微系统。事实证明,所生产的设备能够进行适体功能化并检测氨苄西林常用抗生素,在几分钟内牛奶中的LOD为10μg / ml。因此,在这项初步工作中,我们证明了低成本定制喷墨打印生物传感器的可行性,以及它们在防止抗生素污染和抗生素耐药性发展方面的可能用途。

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