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An Anaerobic Biosensor Assay for the Detection of Mercury and Cadmium
Published on: December 17, 2018
"On-Off" electrochemical sensing toward mercury pollution in tea via exonuclease III triggered target recycling
Lili Zhou1, Guangyue Hou1, Dan Xi1
1Shandong Institute for Product Quality Inspection, Jinan 250102, P. R. China. sdqizhoulili@126.com.
Abstract:
Mercury ion (Hg2+) pollution in tea poses significant risks to human health due to its high toxicity, bioaccumulation, and potential to cause neurological and kidney damage. Sensitive monitoring of Hg2+ in tea is therefore critical for food safety and public health. Here, we developed an electrochemical biosensor for ultrasensitive Hg2+ assay by integrating thymine-Hg2+-thymine (T-Hg2+-T) mismatch recognition with exonuclease III (EXO III)-assisted dual signal amplification. The sensing mechanism relies on Hg2+-triggered formation of T-Hg2+-T structures, which activate EXO III to release Hg2+ for cyclic reuse while generating reporter DNA (RDNA). Signal amplification is further enhanced by MOF(Zr)/Th/AuPt nanocomposites, where the Zr-based metal-organic framework (MOF(Zr)) and AuPt nanoparticles synergistically catalyze thionine (Th) oxidation, producing a strong electrochemical response. This dual-amplification strategy achieves a detection limit of 4.45 pM, surpassing that of conventional methods. The biosensor demonstrates high specificity against interfering metal ions (e.g., Cd2+ and Cu2+) and reliable performance in real tea samples (93.7%∼103.4% recovery), offering a promising tool for monitoring Hg2+ contamination in food products.

