Zeng Lin, Liu Chao, Yang Yi, Hu Shi, Li Ruihan, Tan Xiaotian, Shen Jienan, Zhang Yi, Huang Shaohui, Yang Hui
Research Center for Bionic Sensing and Intelligence, Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, 518055, Shenzhen, China.
Marine Engineering College, Dalian Maritime University, 116026, Dalian, China.
Microsyst Nanoeng. 2024 Dec 31;10(1):207. doi: 10.1038/s41378-024-00837-8.
We present a versatile platform for label-free magnetic separation of plasma, tailored to accommodate diverse environments. This innovative device utilizes an advanced long-short alternating double Halbach magnetic array, specifically engineered for optimal magnetic separation. The array's adaptability allows for seamless integration with separation channels of varying sizes, enabling static separation of whole blood. The platform has a highly flexible processing throughput, spanning from 100 μL to 3 mL per separation cycle without sacrificing separation efficiency. A key aspect of this device is its power-free operation throughout the separation process, obviating the complexity of conventional separation devices. Its effectiveness is demonstrated by the extraction of 40 μL of plasma from 100 μL of rat whole blood within 8 min. The separated plasma proved effective for subsequent analysis of antibody concentration and size in the separated plasma for pharmacokinetic investigations, yielding results on par with those obtained via centrifugation. Furthermore, the device's high-throughput capability was validated using human whole blood, achieving 3 mL of plasma separation in just 1 min. In a follow-up study on COVID-19 IgG antibody detection, the results matched those from centrifugation. The device demonstrates a separation efficiency of 99.9% for cells larger than 1 μm in both rat and human blood samples, with a plasma recovery rate of 72.7%. In summary, our magnetic separation device facilitates rapid plasma extraction from whole blood, with a capacity of up to 3 mL per minute in human blood, without compromising subsequent plasma-based analyses, thereby highlighting its broad applicability across diverse settings.
我们展示了一个用于血浆无标记磁分离的通用平台,该平台经过定制,可适应各种环境。这种创新设备利用了先进的长短交替双哈尔巴赫磁阵列,该阵列经过专门设计以实现最佳磁分离。该阵列的适应性使其能够与不同尺寸的分离通道无缝集成,从而实现全血的静态分离。该平台具有高度灵活的处理通量,每个分离周期可处理100μL至3mL的样本,且不影响分离效率。该设备的一个关键特性是在整个分离过程中无需供电,避免了传统分离设备的复杂性。通过在8分钟内从100μL大鼠全血中提取40μL血浆,证明了其有效性。分离出的血浆在后续药代动力学研究中用于抗体浓度分析和血浆大小分析时效果良好,所得结果与通过离心法获得的结果相当。此外,使用人类全血验证了该设备的高通量能力,仅需1分钟即可实现3mL血浆的分离。在一项关于新冠病毒IgG抗体检测的后续研究中,结果与离心法一致。在大鼠和人类血液样本中,该设备对大于1μm的细胞的分离效率为99.9%,血浆回收率为72.7%。总之,我们的磁分离设备有助于从全血中快速提取血浆,在人类血液中每分钟提取量可达3mL,且不影响后续基于血浆的分析,从而突出了其在各种环境中的广泛适用性。