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Tb^(3+)-nucleic acid probe-based label-free and rapid detection of mercury pollution in food

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摘要 Mercury is a threatening pollutant in food,herein,we developed a Tb^(3+)-nucleic acid probe-based label-free assay for mix-and-read,rapid detection of mercury pollution.The assay utilized the feature of light-up fluorescence of terbium ions(Tb^(3+))via binding with single-strand DNA.Mercury ion,Hg^(2+)induced thymine(T)-rich DNA strand to form a double-strand structure(T-Hg^(2+)-T),thus leading to fluorescence reduction.Based on the principle,Hg^(2+)can be quantified based on the fluorescence of Tb^(3+),the limit of detection was 0.0689μmol/L and the linear range was 0.1-6.0μmol/L.Due to the specificity of T-Hg^(2+)-T artificial base pair,the assay could distinguish Hg^(2+)from other metal ions.The recovery rate was ranged in 98.71%-101.34%for detecting mercury pollution in three food samples.The assay is low-cost,separation-free and mix-to-read,thus was a competitive tool for detection of mercury pollution to ensure food safety.
出处 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期993-998,共6页 食品科学与人类健康(英文)
基金 financially supported by National Natural Science Foundation of China(22074100) the Young Elite Scientist Sponsorship Program by CAST(YESS20200036) the Researchers Supporting Project Number RSP-2021/138 King Saud University,Riyadh,Saudi Arabia Technological Innovation R&D Project of Chengdu City(2019-YF05-31702266-SN) Sichuan University-Panzhihua City joint Project(2020CDPZH-5)。
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