论文标题

用一次性等离子体测定的蛋白质和病毒体的多重生物传感

Multiplexed Biosensing of Proteins and Virions with Disposable Plasmonic Assays

论文作者

Wallace, Stephanie, Kartau, Martin, Kakkar, Tarun, Davis, Chris, Szemiel, Agnieszka, Mailart, Emmanuel, Gautier, Kevin, Lapthorn, Adrian J., Gadegaard, Nikolaj, Kadodwala, Malcolm, Hutchinson, Edward, Karimullah, Affar S.

论文摘要

我们日益增长的量身定制医疗保健的能力,有可能改变临床治疗。但是,多种生物标志物以告知临床决策的测量需要快速,有效和负担得起的诊断。在较大人群中,慢性疾病和快速发展的病原体也升级了需要提高诊断能力的需求。当前的化学诊断通常在集中设施中进行,并且仍取决于多个步骤,分子标记以及详细的分析,从而导致结果周转时间超过数小时和几天。基于横向流动设备的快速诊断试剂盒可以快速返回结果,但只能检测到少数病原体或标记。本文中,我们介绍了使用一次性等离子间作为具有多重能力的低成本光学生物传感的平台,从而消除了当前光学生物传感器中通常需要的流量系统的需求。我们证明了使用手势测量值以及带有shuriken形纳米识别的元素的荧光的系统的生物传感能力。我们还在复杂溶液中对SARS-COV-2进行检测,这是针对高通量,单步,诊断试剂盒的早期发展里程碑,用于鉴别多种呼吸道病毒和任何其他新兴诊断需求。基于此平台的诊断,我们将其称为一次性等离抗原分析的诊断将适用于在近乎护理点上对多种病原体或生物标志物进行低成本筛查。

Our growing ability to tailor healthcare to the needs of individuals has the potential to transform clinical treatment. However, the measurement of multiple biomarkers to inform clinical decisions requires rapid, effective, and affordable diagnostics. Chronic diseases and rapidly evolving pathogens in a larger population have also escalated the need for improved diagnostic capabilities. Current chemical diagnostics are often performed in centralised facilities and are still dependent on multiple steps, molecular labelling, and detailed analysis causing the result turnaround time to be over hours and days. Rapid diagnostic kits based on lateral flow devices can return results quickly but are only capable of detecting a handful of pathogens or markers. Herein we present the use of disposable plasmonics as a platform for low-cost label-free optical biosensing with multiplexing capabilities, eliminating the need for flow systems often required in current optical biosensors. We demonstrate the biosensing capabilities of a system that uses chiroptical measurements as well as plasmonic enhanced fluorescence from metafilms with shuriken shaped nanoindentations. We also perform the detection of SARS-CoV-2 in complex solutions as an early developmental milestone towards high-throughput, single-step, diagnostic kits for differential diagnosis of multiple respiratory viruses and any other emerging diagnostic needs. Diagnostics based on this platform which we term Disposable Plasmonics Assays, would be suitable for low-cost screening of multiple pathogens or biomarkers in a near point of care setting.

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