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基于聚萘二甲酸乙二醇酯(PEN)塑料薄膜制备的用于检测大肠杆菌的贴合式表面声波生物传感器。

Conformable surface acoustic wave biosensor for E-coli fabricated on PEN plastic film.

作者信息

Lamanna Leonardo, Rizzi Francesco, Bhethanabotla Venkat R, De Vittorio Massimo

机构信息

Center for Biomolecular Nanotechnologies, Istituto Italiano di Tecnologia, Via Barsanti snc, Arnesano, Italy; University of Salento, Department of Innovation Engineering, Campus Ecotekne, Via Monteroni, Lecce, Italy; Department of Chemical & Biomedical Engineering University of South Florida Tampa, USA.

Center for Biomolecular Nanotechnologies, Istituto Italiano di Tecnologia, Via Barsanti snc, Arnesano, Italy.

出版信息

Biosens Bioelectron. 2020 Sep 1;163:112164. doi: 10.1016/j.bios.2020.112164. Epub 2020 Apr 2.

Abstract

Over the last decades, great effort has gone into developing new biosensor technologies for applications in different fields such as disease diagnosis and detection of pollutants in water and food. Global developments in robotic, IoT technologies and in healthcare sensors require new flexible sensor technologies that are low cost and built from sustainable and reusable or recyclable materials. One of the most promising technologies is based on the development of surface acoustic wave (SAW) flexible biosensors, which are highly reproducible, reliable and wirelessly controllable. This work presents for the first time a novel aluminum nitride (AlN)-based conformable SAW immunosensor fabricated on recyclable polyethylene naphthalate. We apply it to the detection of E.Coli using a faster and innovative functionalization method that exploit Protein-A/antibody affinity. A higher sensitivity (Limit of detection-LoD, 6.5410 CFU/ml) of the Lamb wave traveling on the polymeric device has been obtained in comparison with SAWs traveling on AlN on silicon substrate (LoD, 1.0410 CFU/ml). Implementation of a finite element method allowed for the estimation of the single E.Coli mass of approximately 9*10 g. This work demonstrates the high biosensing potential of flexible polymeric SAW devices for bacteria contamination control in food chain, water and smart packaging.

摘要

在过去几十年里,人们付出了巨大努力来开发新的生物传感器技术,以应用于不同领域,如疾病诊断以及检测水和食品中的污染物。机器人技术、物联网技术和医疗保健传感器的全球发展需要新的灵活传感器技术,这些技术成本低,由可持续且可重复使用或可回收的材料制成。最有前途的技术之一是基于表面声波(SAW)柔性生物传感器的开发,这种传感器具有高度可重复性、可靠性且可无线控制。这项工作首次展示了一种基于氮化铝(AlN)的新型适形SAW免疫传感器,该传感器是在可回收的聚萘二甲酸乙二醇酯上制造的。我们使用一种利用蛋白A/抗体亲和力的更快且创新的功能化方法将其应用于大肠杆菌的检测。与在硅基衬底上的AlN上传播的SAW相比,在聚合物器件上传播的兰姆波具有更高的灵敏度(检测限-LoD,6.54×10 CFU/ml),而在硅基衬底上的AlN上传播的SAW的检测限为1.04×10 CFU/ml。有限元方法的实施使得能够估计单个大肠杆菌的质量约为9×10 g。这项工作证明了柔性聚合物SAW器件在食物链、水和智能包装中细菌污染控制方面具有很高的生物传感潜力。

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