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◆ ACS Sensors2026-03-31· Duplex (building)

Capillary-Driven Duplex Microfluidic Device Enabling Simultaneous Electrochemical Immunoassays for Detecting SARS-CoV-2 and Respiratory Syncytial Virus

J. Park, Thaísa A. Baldo, Jeremy Link, Yosita Panraksa, Emily N. Gallichotte, Gregory D. Ebel, Brian J. Geiss, David S. Dandy, Charles S. Henry

原始摘要(英文原文)· Original abstract
This study aims to develop a rapid, multiplexed electrochemical sensor for the simultaneous detection of SARS-CoV-2 nucleocapsid protein and respiratory syncytial virus fusion protein for timely, accurate point-of-care (POC) diagnosis and differentiation between the two viral infections that result in similar symptoms and could pose serious complications in vulnerable populations. The system utilizes duplex electrochemical capillary-driven immunoassay (eCaDI) devices that combine the sensitivity and quantifiability of electrochemical sensing with the simplicity, which eliminates the need for an active pump, and the automation feature of capillary-driven microfluidics. The duplex eCaDI integrates near-field communication-powered electrochemical detection into a dual-channel capillary-driven microfluidic design for improved portability and applicability in POC settings. The duplex eCaDI achieved limits of detection of 1.5 ng/mL for nucleocapsid protein and 7.9 ng/mL for fusion protein, with a total assay time of 6 min. Moreover, pooled nasal swab samples from healthy donors were spiked with low (50 ng/mL), medium (200 ng/mL), and high (500 ng/mL) concentrations of target proteins and were tested with the duplex eCaDI, showing 100% detection rate in high and medium concentration samples and 50% in low concentration samples. This system can further be integrated with a smartphone-based program to immediately provide intuitive results to end users, suggesting a promising solution to achieve rapid, power-efficient, and user-friendly multiplexed diagnosis of respiratory viruses across various environments.
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Capillary-Driven Duplex Microfluidic Device Enabling Simultaneous Electrochemical Immunoassays for Detecting SARS-CoV-2 and Respiratory Syncytial Virus — 科研速览 Science Skim