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Updated: May 5, 2026

Development of a Lateral Flow Immunochromatographic Strip for Rapid and Quantitative Detection of Small Molecule Compounds
Published on: November 13, 2021
MAAN-eLFA: A portable electrical lateral flow assay enabled by cooperative MXene@Au-Ag nanowires networks for H1N1
Renlong Zhu1, Kunlu Lin2, Junhua Su2
1Department of Clinical Laboratory, Peking University Ditan Teaching Hospital, Peking University, Beijing, 100015, China.
Abstract:
Lateral flow immunoassay (LFA) is a rapid and low-cost point-of-care testing technology; however, conventional optical readouts provide limited quantitative reliability. Here, we propose a structurally redesigned electrical LFA platform (MAAN-eLFA) featuring a built-in conductive architecture for quantitative antigen detection. Unlike traditional LFAs, a continuous silver nanowire network is pre-integrated across the nitrocellulose membrane to enable global electron transport, while MXene (Ti3C2Tx)-gold (MXene@Au) nanoprobes function as signal-transducing elements at the test line. Antigen recognition induces localized probe accumulation, activating multiple parallel electrical conduction pathways within the pre-established network and producing a measurable current output. This architecture enables direct electrical readout using a portable reader costing less than USD 10. The resulting electrical signal shows stable ohmic behavior and excellent concentration dependence. Using H1N1 antigen as a model, the assay achieves a detection limit of 0.124 ng/mL, representing an ∼80-fold sensitivity improvement over conventional colloidal gold LFAs. The platform exhibits good repeatability (RSD <8%), high specificity, and full agreement with RT-PCR in a preliminary validation of 15 clinical samples. This work demonstrates a network-engineered, low-cost electrical LFA strategy suitable for scalable quantitative point-of-care diagnostics.

