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A PDMS/paper/glass hybrid microfluidic biochip integrated with aptamer-functionalized graphene oxide nano-biosensors for one-step multiplexed pathogen detection

机译:PDMS /纸/玻璃混合微流体生物芯片与适体功能化的氧化石墨烯纳米生物传感器集成,用于一步多路病原体检测

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摘要

Infectious pathogens often cause serious public health concerns throughout the world. There is an increasing demand for simple, rapid and sensitive approaches for multiplexed pathogen detection. In this paper we have developed a polydimethylsiloxane (PDMS)/paper/glass hybrid microfluidic system integrated with aptamer-functionalized graphene oxide (GO) nano-biosensors for simple, one-step, multiplexed pathogen detection. The paper substrate used in this hybrid microfluidic system facilitated the integration of aptamer biosensors on the microfluidic biochip, and avoided complicated surface treatment and aptamer probe immobilization in a PDMS or glass-only microfluidic system. Lactobacillus acidophilus was used as a bacterium model to develop the microfluidic platform with a detection limit of 11.0 cfu mL~l We have also successfully extended this method to the simultaneous detection of two infectious pathogens - Staphylococcus aureus and Salmonella enterica. This method is simple and fast. The one-step 'turn on' pathogen assay in a ready-to-use microfluidic device only takes ~10 min to complete on the biochip. Furthermore, this microfluidic device has great potential in rapid detection of a wide variety of different other bacterial and viral pathogens.
机译:传染性病原体经常引起全世界的严重公共卫生问题。对用于多重病原体检测的简单,快速和灵敏的方法的需求日益增长。在本文中,我们已经开发了与适体功能化的氧化石墨烯(GO)纳米生物传感器集成的聚二甲基硅氧烷(PDMS)/纸/玻璃混合微流体系统,用于简单,一步,多重病原体检测。在该混合微流体系统中使用的纸质基材有助于将适体生物传感器集成到微流体生物芯片上,并避免了在PDMS或仅玻璃微流体系统中进行复杂的表面处理和将适体探针固定化。嗜酸乳杆菌被用作细菌模型以开发检测限为11.0 cfu mL〜l的微流体平台。我们还成功地将该方法扩展到了同时检测两种传染性病原体-金黄色葡萄球菌和沙门氏菌。此方法简单,快速。即用型微流控设备中的一步式“打开”病原体测定只需约10分钟即可在生物芯片上完成。此外,这种微流体装置在快速检测多种不同的其他细菌和病毒病原体方面具有巨大潜力。

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