Wang Zhili, Cheng Yueyang, Tang Ting, Zhang Xiaoru, Yuan Xunyi
Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science, MOE, and College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, 266042, China.
Faculty of Science, National University of Singapore, 3 Science Drive 3, Singapore, 117543, Singapore.
Mikrochim Acta. 2025 Jan 21;192(2):97. doi: 10.1007/s00604-025-06956-x.
A lateral flow assay (LFA) was developed for the simultaneous or separate detection of mercury ion and silver ion based on isothermal nucleic acid amplification. T-Hg-T and C-Ag-C were utilized in the isothermal nucleic acid amplification strategy to form specific complementary base pairs. Under the action of KF polymerase and endonuclease Nt.BbvCl, trace amounts of Hg and Ag were converted to Product-Hg and Product-Ag as bridges. Biotin-labeled capture strands (Biotin-DNA1, Biotin-DNA1, and Biotin-DNA3) immobilized on the test strips could capture the Au NPs-DNA nanoprobes by hybridization with the generated bridge products for monitoring of two heavy metal ions simultaneously or separately. The assembly method of DNAs on the nanoprobes was explored, and the DNA sequences on the nanoprobes were designed so that only one kind of DNA strand was used to bind to all three capture DNA strands on the C, T1, and T2 bands. Under optimal detection conditions, the limits of detection for Hg and Ag were 2.19 and 5.41 pM, respectively, with desired selectivity and reproducibility.
基于等温核酸扩增技术开发了一种侧向流动分析(LFA)方法,用于同时或分别检测汞离子和银离子。在等温核酸扩增策略中利用T-Hg-T和C-Ag-C形成特定的互补碱基对。在KF聚合酶和核酸内切酶Nt.BbvCl的作用下,痕量的Hg和Ag转化为作为桥梁的产物-Hg和产物-Ag。固定在测试条上的生物素标记捕获链(生物素-DNA1、生物素-DNA2和生物素-DNA3)可通过与生成的桥梁产物杂交捕获金纳米颗粒-DNA纳米探针,从而同时或分别监测两种重金属离子。探索了DNA在纳米探针上的组装方法,并对纳米探针上的DNA序列进行了设计,使得仅用一种DNA链就能与C、T1和T2条带上的所有三种捕获DNA链结合。在最佳检测条件下,Hg和Ag的检测限分别为2.19和5.41 pM,具有良好的选择性和重现性。