BioNano Laboratory, School of Engineering, University of Guelph, Guelph, Canada N1G 2W1.
BioNano Laboratory, School of Engineering, University of Guelph, Guelph, Canada N1G 2W1.
Biosens Bioelectron. 2016 Nov 15;85:649-656. doi: 10.1016/j.bios.2016.05.072. Epub 2016 May 24.
The increasing prevalence of food allergies and the intake of packing foods in the past two decades urge the need for more rapid, accurate, and sensitive assays to detect potential allergens in food in order to control the allergen content. Most of the commercial analytical tools for allergen detection rely on immunoassays such as ELISA. As far as disadvantages, ELISA can be time-consuming and expensive. Biosensors appear as a suitable alternative for the detection of allergens because they are rapid, highly sensitive, selective, less expensive, environmentally friendly, and easy to handle. In this study, we developed a microfluidic system integrated with a quantum dots (Qdots) aptamer functionalized graphene oxide (GO) nano-biosensor for simple, rapid, and sensitive food allergen detection. The biosensor utilized Qdots-aptamer-GO complexes as probes to undergo conformational change upon interaction with the food allergens, resulting in fluorescence changes due to the fluorescence quenching and recovering properties of GO by adsorption and desorption of aptamer-conjugated Qdots. This one-step 'turn on' homogenous assay in a ready-to-use microfluidic chip took ~10min to achieve a quantitative detection of Ara h 1, one of the major allergens appearing in peanuts. The results suggested this system had remarkable sensitivity and selectivity. The integration of a microfluidics platform in a homemade miniaturized optical analyzer provides a promising way for the rapid, cost-effective, and accurate on-site determination of food allergens. This biosensor can also be extended to the detection of other food allergens with a selection of corresponding aptamers.
在过去的二十年中,食物过敏的发病率不断上升,包装食品的摄入量也在增加,这促使人们需要更快速、准确和敏感的检测方法来检测食品中的潜在过敏原,以控制过敏原的含量。大多数用于过敏原检测的商业分析工具都依赖于免疫分析,如 ELISA。缺点是,ELISA 耗时且昂贵。生物传感器作为过敏原检测的一种替代方法具有优势,因为它们快速、高度敏感、选择性强、成本较低、环保且易于操作。在本研究中,我们开发了一种与量子点(Qdots)适配体功能化氧化石墨烯(GO)纳米生物传感器集成的微流控系统,用于简单、快速和灵敏的食物过敏原检测。该生物传感器利用 Qdots-aptamer-GO 复合物作为探针,与食物过敏原相互作用时发生构象变化,由于 GO 通过吸附和解吸与 Qdots 偶联的适配体而具有荧光猝灭和恢复特性,导致荧光发生变化。这种一步式“打开”均相检测在即用型微流控芯片中只需约 10 分钟即可实现对花生中主要过敏原之一 Ara h 1 的定量检测。结果表明该系统具有显著的灵敏度和选择性。微流控平台与自制微型光学分析仪的集成提供了一种快速、经济高效、准确的现场食物过敏原检测的有前途的方法。这种生物传感器还可以通过选择相应的适配体来扩展到其他食物过敏原的检测。