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◆ Analytical Chemistry2026-01-29· Chemistry

Rapid and Sensitive Pathogen Detection and Viability Evaluation: A Lateral Flow Assay Based on One-to-Multiple Signal Amplification

Ying Liu, Qingfeng Zheng, Tao Liao, Hua Lei, Fengyu Guo, Jianhan Lin, Zhaohui Qiao, Hua Yang, Wen Wang, Ruibin Hu

原始摘要(英文原文)· Original abstract
Lateral flow assays (LFAs) offer point-of-care pathogen detection but suffer from low sensitivity and an inability to differentiate pathogen viability. To address these challenges, this work integrates a small DNA-binding molecule, asymmetric isothermal amplification, and immuno-LFA techniques in a novel assay, termed NALFIA. Notably, this assay uses a one-to-multiple secondary signal amplification strategy employing single-stranded amplicons (Ss-amplicons) hybridized with multiple short probes (F-probes) and functionalized signal nanospheres (PSred NSs) to enhance the detection sensitivity, achieving an approximately 100-fold improvement in the detection limit over single-probe hybridized LFAs. Moreover, after only 5 min of chromatography, the outcome could be read by the naked eye, markedly boosting the detection efficiency. Validation with 90 real samples demonstrated 100% concordance with quantitative polymerase chain reaction analysis. Crucially, NALFIA is uniquely capable of evaluating the survival status of pathogens, as demonstrated by its application in investigating UV-induced germicidal efficacy through time-dependent viability ratios. In addition to showing good suitability for mass pathogen screening, this highly sensitive and cost-effective platform can be applied to identify live and dead pathogens, thereby enhancing field-deployable detection and antibacterial efficacy assessments.
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