论文标题

磁颗粒光谱应用的频率和振幅优化

Frequency and Amplitude Optimizations for Magnetic Particle Spectroscopy Applications

论文作者

Chugh, Vinit Kumar, di Girolamo, Arturo, Krishna, Venkatramana D., Wu, Kai, Cheeran, Maxim C-J, Wang, Jian-Ping

论文摘要

如今,对基于磁颗粒光谱(MPS)的生物测定的领域越来越感兴趣。 MPS通过交替的磁场(AMF)激发表面官能化磁性纳米颗粒(MNP)的动态磁反应来检测各种目标分析物。由于其低成本,Biomatrix的低背景磁噪声干扰以及快速响应时间,这项技术在过去十年中蓬勃发展。世界各地的不同群体已经报道了大量的MPS变体,其应用从疾病诊断到食源性病原体检测以及病毒检测。但是,迫切需要指导如何通过选择不同类型的MNP,AMF模式和MPS分析策略(即基于体积和表面的测定法)来优化MPS检测的灵敏度。在这项工作中,我们系统地研究了AMF频率和振幅对在两个极端条件下的单核和多核MNP响应的影响,即结合状态和未结合状态。我们的结果表明,利用多核MNP的双频MP等一些模式更适合基于表面的生物测定应用,而使用单型或多核MNP的单频MPS系统更适合于体积的生物测定应用。此外,通过仔细选择AMF频率和振幅,可以进一步提高对这些方式的生物测定敏感性。

Nowadays, there is a growing interest in the field of magnetic particle spectroscopy (MPS)-based bioassays. MPS monitors the dynamic magnetic response of surface-functionalized magnetic nanoparticles (MNPs) upon excitation by an alternating magnetic field (AMF) to detect various target analytes. This technology has flourished in the past decade due to its low cost, low background magnetic noise interference from biomatrix, and fast response time. A large number of MPS variants have been reported by different groups around the world, with applications ranging from disease diagnosis to foodborne pathogen detection, and virus detection. However, there is an urgent need for guidance on how to optimize the sensitivity of MPS detection by choosing different types of MNPs, AMF modalities, and MPS assay strategies (i.e., volume- and surface-based assays). In this work, we systematically study the effect of AMF frequencies and amplitudes on the responses of single- and multi-core MNPs under two extreme conditions, namely, the bound and unbound states. Our results show that some modalities such as dual-frequency MPS utilizing multicore MNPs are more suitable for surface-based bioassay applications, whereas, single-frequency MPS systems using single- or multi-core MNPs are better suited for volumetric bioassay applications. Furthermore, the bioassay sensitivities for these modalities can be further improved by careful selection of AMF frequencies and amplitudes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源