Department of Engineering, Integrated Graduate School of Medicine, Engineering, and Agricultural Sciences, Graduate School of University of Yamanashi, 4-3-11 Takeda, Kofu, 400-8510, Japan.
Graduate Faculty of Interdisciplinary Research, University of Yamanashi, 4-3-11 Takeda, Kofu, 400-8510, Japan.
Biomed Microdevices. 2024 Apr 9;26(2):22. doi: 10.1007/s10544-024-00703-4.
We report a centrifugal microfluidic device that automatically performs sample preparation under steady-state rotation for clinical applications using mass spectrometry. The autonomous microfluidic device was designed for the control of liquid operation on centrifugal hydrokinetics (CLOCK) paradigm. The reported device was highly stable, with less than 7% variation with respect to the time of each unit operation (sample extraction, mixing, and supernatant extraction) in the preparation process. An agitation mechanism with bubbling was used to mix the sample and organic solvent in this device. We confirmed that the device effectively removed the protein aggregates from the sample, and the performance was comparable to those of conventional manual sample preparation procedures that use high-speed centrifugation. In addition, probe electrospray ionization mass spectrometry (PESI-MS) was performed to compare the device-treated and manually treated samples. The obtained PESI-MS spectra were analyzed by partial least squares discriminant analysis, and the preparation capability of the device was found to be equivalent to that of the conventional method.
我们报告了一种离心微流控装置,该装置可在临床应用中使用质谱在稳态旋转下自动进行样品制备。该自主微流控装置是为控制离心流体动力学(CLOCK)范例中的液体操作而设计的。所报道的装置非常稳定,在准备过程中,每个单元操作(样品提取、混合和上清液提取)的时间变化小于 7%。该装置使用鼓泡搅拌机制来混合样品和有机溶剂。我们证实该装置能够有效地从样品中去除蛋白质聚集体,并且其性能与使用高速离心的传统手动样品制备程序相当。此外,进行了探针电喷雾电离质谱(PESI-MS)以比较该装置处理和手动处理的样品。通过偏最小二乘判别分析对获得的 PESI-MS 光谱进行分析,发现该装置的制备能力与传统方法相当。