Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON M5S 3G8, Canada.
Department of Mechanical Engineering, McGill University, Montreal, QC H3A 0C3, Canada.
ACS Sens. 2023 Sep 22;8(9):3574-3584. doi: 10.1021/acssensors.3c01221. Epub 2023 Sep 14.
Rapid and accurate diagnosis of cardiovascular diseases (CVDs) at the earliest stage is of paramount importance to improve the treatment outcomes and avoid irreversible damage to a patient's cardiovascular system. Microfluidic paper-based devices (μPADs) represent a promising platform for rapid CVD diagnosis at the point of care (POC). This paper presents an electrochemical μPAD (E-μPAD) with an all-in-one origami design for rapid and POC testing of cardiac protein markers in whole blood. Based on the label-free, electrochemical impedance spectroscopy (EIS) immunoassay, the E-μPAD integrates all essential components on a single chip, including three electrochemical cells, a plasma separation membrane, and a buffer absorption pad, enabling easy and streamlined operations for multiplexed detection of three cardiac protein markers [cardiac troponin I (cTnI), brain natriuretic peptide (BNP)-32, and D-Dimer] on a finger-prick whole blood sample within 46 min. Superior analytical performance is achieved through sensitive EIS measurement on carbon electrodes decorated with semiconductor zinc oxide nanowires (ZnO NWs). Using spiked human plasma samples, ultralow limits of detection (LODs) of E-μPAD are achieved at 4.6 pg/mL (190 fM) for cTnI, 1.2 pg/mL (40 fM) for BNP-32, and 146 pg/mL (730 fM) for D-Dimer. Real human blood samples spiked with purified proteins are also tested, and the device's analytical performance was proven to be comparable to commercial ELISA kits. The all-in-one E-μPAD will allow rapid and sensitive testing of cardiac protein markers through easy operations, which holds great potential for on-site screening of acute CVDs in nonlaboratory settings such as emergency rooms, doctor's offices, or patient homes.
快速准确地诊断心血管疾病(CVDs)在早期阶段对于改善治疗效果和避免患者心血管系统的不可逆转损伤至关重要。微流控纸基器件(μPAD)代表了在即时护理(POC)点进行快速 CVD 诊断的有前途的平台。本文提出了一种具有一体式折纸设计的电化学 μPAD(E-μPAD),用于快速和 POC 测试全血中的心脏蛋白标志物。基于无标记、电化学阻抗谱(EIS)免疫分析,E-μPAD 将所有必需的组件集成在单个芯片上,包括三个电化学池、血浆分离膜和缓冲吸收垫,可轻松实现操作,实现对三种心脏蛋白标志物[心肌肌钙蛋白 I(cTnI)、脑钠肽 32(BNP-32)和 D-二聚体]的指尖全血样本的多路复用检测,整个过程在 46 分钟内完成。通过在半导体氧化锌纳米线(ZnO NWs)修饰的碳电极上进行灵敏的 EIS 测量,实现了卓越的分析性能。使用加标人血浆样本,E-μPAD 实现了超低的检测限(LOD),cTnI 为 4.6 pg/mL(190 fM),BNP-32 为 1.2 pg/mL(40 fM),D-二聚体为 146 pg/mL(730 fM)。还测试了用纯化蛋白加标的真实人血样本,证明了该设备的分析性能可与商业 ELISA 试剂盒相媲美。这种一体式 E-μPAD 将通过简单的操作实现心脏蛋白标志物的快速灵敏检测,有望在急诊室、医生办公室或患者家中等非实验室环境中进行急性 CVD 的现场筛查。