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一种微流控等离子体分离装置与表面等离子体共振生物传感器相结合,用于全血中生物标志物的检测。

A microfluidic plasma separation device combined with a surface plasmon resonance biosensor for biomarker detection in whole blood.

机构信息

Department of Electrical and Computer Engineering, University of Waterloo, Waterloo, ON N2L 3G1, Canada.

Affinité Instruments, 1250 Guy St #600, Montreal, QC H3H 2L3, Canada.

出版信息

Lab Chip. 2023 Feb 14;23(4):572-579. doi: 10.1039/d2lc00693f.

Abstract

Biomarker detection in whole blood enables understanding of the cause, progression, relapse or outcome of treatment of a disease. Conventional biomarker detection techniques, such as enzyme-linked immunosorbent assay, polymerase chain reaction, and immunofluorescence, require long assay time, costly laboratory instruments, large reagent volume and sample pre-processing. Hence, there is an unmet need for reliable capture and detection of biomarkers in unprocessed blood which are adaptable to point-of-care (POC) testing. Here, we present a simple, low-cost, and rapid protein detection device from whole blood samples which has the potential to be employed in a POC setting. The platform consists of two components: a plasma separation device that extracts plasma from whole blood without the application of any external active forces and a SPR sensor chip that uses a label-free optical technique for the detection of biomarkers in the extracted plasma. We have demonstrated the detection of IgG and IgM biomolecules in unprocessed blood at concentrations lower than the physiological value within 15 min. The proposed technique has the potential for improving the diagnosis and screening of many diseases, including cancer, influenza, human immunodeficiency virus, and SARS-Cov2 at POC.

摘要

全血中的生物标志物检测可帮助了解疾病的病因、进展、复发或治疗效果。传统的生物标志物检测技术,如酶联免疫吸附测定、聚合酶链反应和免疫荧光法,需要较长的检测时间、昂贵的实验室仪器、大量试剂和样品预处理。因此,需要可靠的方法来捕获和检测未经处理的血液中的生物标志物,以便适用于即时检测(POC)。在这里,我们提出了一种简单、低成本、快速的蛋白质检测装置,可从全血样本中提取,无需施加任何外部主动力,且该装置由两个部分组成:一个是从全血中提取血浆的血浆分离装置,另一个是 SPR 传感器芯片,它使用无标记的光学技术检测提取的血浆中的生物标志物。我们已经证明,在 15 分钟内,可在低于生理值的浓度下检测到未经处理的血液中的 IgG 和 IgM 生物分子。该技术有望在 POC 条件下改善癌症、流感、人类免疫缺陷病毒和 SARS-Cov2 等多种疾病的诊断和筛查。

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