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A target-responsive and signal-amplified DNA hydrogel biosensor for visual and quantitative detection of aflatoxin B1
Haojie Du1, Haoyue Liu1, Yongshuai Li1
1School of New Materials and Future Technologies, Beijing Technology and Business University, No.11 Fucheng Road, Haidian District, Beijing 100048, China.
Abstract:
Aflatoxin B1 (AFB1) poses a severe threat to food safety due to its potent carcinogenicity. To address the need for rapid and on-site detection, this study developed a colorimetric biosensor based on an AFB1-responsive DNA aptamercross-linked sodium alginate hydrogel. Gold nanoparticles (AuNPs) were encapsulated within the hydrogel as a visual signal reporter. The sensing mechanism relies on target-induced dissociation of aptamer crosslinkers, leading to hydrogel disintegration and release of AuNPs. The hydrogel formulation was optimized regarding sodium alginate concentration and crosslinking conditions. To enhance sensitivity, an Exonuclease I (Exo I)-triggered target recycling strategy was implemented, which amplifies hydrogel network disruption by cleaving the aptamer-target complex and recycling the aptamer. The sensor demonstrated a linear detection range of 0-50 μM, with a detection limit of 12.9 nM, and exhibited high selectivity towards AFB1. This work presents a sensitive, visually readable, and portable platform for mycotoxin detection in food safety applications.
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