论文标题

便携式磁性颗粒光谱仪(MPS),用于未来的快速生物测定

Portable Magnetic Particle Spectrometer (MPS) for Future Rapid and Wash-free Bioassays

论文作者

Wu, Kai, Chugh, Vinit Kumar, di Girolamo, Arturo, Liu, Jinming, Saha, Renata, Su, Diqing, Krishna, Venkatramana D., Nair, Abilash, Davies, Will, Wang, Andrew Yongqiang, Cheeran, Maxim C-J, Wang, Jian-Ping

论文摘要

如今,关于高准确性,易用性和低成本的患者,人们对更容易获得的常规诊断需求的需求增加。但是,大型医院和实验室的定量和高精度的生物测定法通常需要既笨重又昂贵的训练有素的技术人员和设备。此外,多步生物测定和较长的周转时间可能会严重影响疾病的监视和控制,尤其是在流感和Covid-19等大流行中。鉴于此,便携式定量生物测定设备在稀缺的医疗资源地区将很有价值,并有助于减轻当地医疗保健系统的负担。本文中,我们介绍了基于磁性颗粒光谱仪(MPS)技术的廉价,便携式,定量和快速生物测定平台的Magicoil Diagnostic设备。 MPS检测磁性纳米颗粒(MNP)的动态磁反应,并使用振荡MNP的谐波作为敏感和定量生物测定的指标。该设备不需要训练有素的技术人员操作并使用用户友好的智能手机界面使用全自动,单步,无洗的测定法。使用链霉亲和素 - 生物素结合系统作为模型,我们表明,链霉亲和素的当前便携式设备的检测极限为64 nm(等于5.12 pmole)。此外,此MPS技术非常通用,仅通过更改MNP的表面修饰来检测不同疾病。

Nowadays, there is an increasing demand for more accessible routine diagnostics for patients with respect to high accuracy, ease of use, and low cost. However, the quantitative and high accuracy bioassays in large hospitals and laboratories usually require trained technicians and equipment that is both bulky and expensive. In addition, the multi-step bioassays and long turnaround time could severely affect the disease surveillance and control especially in pandemics such as influenza and COVID-19. In view of this, a portable, quantitative bioassay device will be valuable in regions with scarce medical resources and help relieve burden on local healthcare systems. Herein, we introduce the MagiCoil diagnostic device, an inexpensive, portable, quantitative and rapid bioassay platform based on magnetic particle spectrometer (MPS) technique. MPS detects the dynamic magnetic responses of magnetic nanoparticles (MNPs) and uses the harmonics from oscillating MNPs as metrics for sensitive and quantitative bioassays. This device does not require trained technicians to operate and employs a fully automatic, one-step, wash-free assay with user friendly smartphone interface. Using a streptavidin-biotin binding system as a model, we show that the detection limit of the current portable device for streptavidin is 64 nM (equal to 5.12 pmole). In addition, this MPS technique is very versatile and allows for the detection of different diseases just by changing the surface modifications on MNPs.

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