Department of Electrical and Computer Engineering, Texas Tech University, Lubbock, TX 79409, USA.
Department of Electrical and Computer Engineering, University of Minnesota, Minneapolis, MN 55455, USA.
Sensors (Basel). 2023 Apr 30;23(9):4411. doi: 10.3390/s23094411.
Since its first report in 2006, magnetic particle spectroscopy (MPS)-based biosensors have flourished over the past decade. Currently, MPS are used for a wide range of applications, such as disease diagnosis, foodborne pathogen detection, etc. In this work, different MPS platforms, such as dual-frequency and mono-frequency driving field designs, were reviewed. MPS combined with multi-functional magnetic nanoparticles (MNPs) have been extensively reported as a versatile platform for the detection of a long list of biomarkers. The surface-functionalized MNPs serve as nanoprobes that specifically bind and label target analytes from liquid samples. Herein, an analysis of the theories and mechanisms that underlie different MPS platforms, which enable the implementation of bioassays based on either volume or surface, was carried out. Furthermore, this review draws attention to some significant MPS platform applications in the biomedical and biological fields. In recent years, different kinds of MPS point-of-care (POC) devices have been reported independently by several groups in the world. Due to the high detection sensitivity, simple assay procedures and low cost per run, the MPS POC devices are expected to become more widespread in the future. In addition, the growth of telemedicine and remote monitoring has created a greater demand for POC devices, as patients are able to receive health assessments and obtain results from the comfort of their own homes. At the end of this review, we comment on the opportunities and challenges for POC devices as well as MPS devices regarding the intensely growing demand for rapid, affordable, high-sensitivity and user-friendly devices.
自 2006 年首次报道以来,基于磁性粒子光谱(MPS)的生物传感器在过去十年中蓬勃发展。目前,MPS 被广泛应用于疾病诊断、食源性病原体检测等领域。在这项工作中,我们回顾了不同的 MPS 平台,如双频和单频驱动场设计。MPS 与多功能磁性纳米粒子(MNPs)结合已被广泛报道为一种通用平台,可用于检测一系列生物标志物。表面功能化的 MNPs 可用作纳米探针,特异性地结合和标记来自液体样本的靶分析物。本文分析了不同 MPS 平台的理论和机制,这些平台能够实现基于体积或表面的生物测定。此外,本文还关注了 MPS 在生物医学和生物学领域的一些重要应用。近年来,世界上不同的研究小组已经独立报道了不同种类的 MPS 即时检测(POC)设备。由于其具有高检测灵敏度、简单的检测程序和低运行成本,MPS POC 设备有望在未来得到更广泛的应用。此外,远程医疗和远程监测的发展对 POC 设备提出了更高的需求,因为患者可以在家中舒适地接受健康评估并获得结果。在本文的结尾,我们对 POC 设备和 MPS 设备的机遇和挑战进行了评论,因为对快速、经济实惠、高灵敏度和用户友好型设备的需求正在迅速增长。