Progress of lateral flow assays for the detection of molecular and microbial species: From basic formats to microfluids, CRISPR and artificial intelligence

Abstract

Lateral flow assays (LFAs) have garnered much interest in the biomedical and agricultural sciences because of their user-friendly design, quick turnaround times, minimal interference, affordability, and ease of use by individuals. Until now, many researchers have reported the use of LFAs for microbial and molecular species identification in the area of clinical and environmental fields respectively. In this review, we describe the progress in design of LFAs techniques with basic formats to advanced technology (artificial intelligence and machine learning programmes) for detection of molecular and microbial species. The main objective of this review is to provide potential applications of LFAs with advanced technology for the detection of molecules species (from molecular targets to whole-cells) in real samples. In detail, we have discussed about the principle, working, fabrication and the detection methods of LFAs. Modification of LFAs with various molecules (organic, polymers and biomolecules) and nanomaterials is summarized. Detection mechanisms of LFAs are discussed for the identification of molecular targets and cells. The further advancements in this technology are also highlighted along with its challenges and future perspectives.

Article information

Article type
Tutorial Review
Submitted
04 Apr 2025
Accepted
30 Nov 2025
First published
01 Dec 2025

Analyst, 2026, Accepted Manuscript

Progress of lateral flow assays for the detection of molecular and microbial species: From basic formats to microfluids, CRISPR and artificial intelligence

J. H. Kagdi, V. N. Mehta, S. Jha, T. J. Park, H. Basu and S. K. Kailasa, Analyst, 2026, Accepted Manuscript , DOI: 10.1039/D5AN00392J

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