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A lyophilized CHA-lateral flow platform for point-of-care detection of miR-106b-5p from L1CAM-Immunocaptured small extracellular vesicles in Alzheimer's disease.

Created on 27 Aug 2026

Authors

Ran Xu, Hao Chen, Chao Zhao, Xiqing Ding

Published in

Analytica chimica acta. Volume 1420. Pages 345938. Oct 22, 2026. Epub Jul 11, 2026.

Abstract

The early, non-invasive diagnosis of Alzheimer's disease (AD) remains a significant clinical challenge. MicroRNAs carried by L1CAM-immunocaptured small extracellular vesicles (sEVs) in blood, particularly miR-106b-5p, have emerged as promising candidate biomarkers for AD. However, their detection requires methods that are sensitive, specific, stable, and suitable for point-of-care (POC) applications. Catalytic hairpin assembly (CHA) combined with lateral flow immunoassay (LFIA) offers a potential POC solution, but its practical application is limited by high background leakage caused by "DNA breathing" and poor probe stability. Herein, we propose an integrated POC platform that combines immunomagnetic enrichment of L1CAM-positive sEVs with a novel "Fold-Adsorb-Block-Immobilize-Lyophilize" (FABIL) process for CHA probe stabilization. The FABIL process utilizes magnetic graphene oxide (MGO) to adsorb and physically separate hairpin probes (H1 and H2), thereby suppressing nonspecific hybridization and generating lyophilized CHA microspheres with room-temperature stability. When integrated into a lateral flow test strip, the FABIL-NE-miR platform achieves a visual detection limit of 10 fM and a liquid-phase limit of detection of 1.14 fM, overcoming the traditional trade-off between low background and high sensitivity. Clinical validation using 100 serum samples, including 32 AD cases and 68 non-AD controls, demonstrated that FABIL-NE-miR outperformed traditional low-background CHA systems, with an area under the ROC curve (AUC) of 0.9563, a sensitivity of 90.63%, and a specificity of 94.12%. Overall, the FABIL-NE-miR platform enables rapid visual detection of low-abundance AD-associated miRNAs from L1CAM-immunocaptured sEV fractions. By addressing key challenges such as background leakage and probe instability, this study provides a practical tool for AD screening and supports the feasibility of the FABIL strategy as a universal platform for next-generation nucleic acid diagnostics.

PMID:
42648816
Bibliographic data and abstract were imported from PubMed on 27 Aug 2026.

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