基于适配体的汞离子光学生物纳米传感器

Kimber L. Brenneman, B. Sen, M. Stroscio, M. Dutta
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引用次数: 12

摘要

利用DNA适体作为分子识别元件,在纳摩尔水平上实现了Hg2+离子的检测。被称为凝血酶结合适体(TBA)的单链DNA序列被结合到量子点和金纳米颗粒上,以创建汞感应探针。量子点供体和金纳米粒子受体允许使用分光光度计通过能量转移进行光学检测。分析物的存在引起光致发光的减少。10 nM适体探针在500 nM Hg2+离子下的猝灭效率为62%。当探针暴露在更高浓度的Hg2+离子(824µM)中时,光致发光完全熄灭。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aptamer-based optical bionano sensor for mercury(II) ions
The detection of Hg2+ ions at the nanomolar level was achieved using a DNA aptamer as the molecular recognition element. The single stranded DNA sequence known as thrombin binding aptamer (TBA) was conjugated to a quantum dot and a gold nanoparticle to create the mercury-sensing probe. The quantum dot donor and gold nanoparticle acceptor allowed for optical detection via energy transfer using a spectrophotometer. The presence of the analyte caused a decrease in photoluminescence. The quenching efficiency at 500 nM Hg2+ ions with 10 nM aptamer probe was 62%. When the probe was exposed to a much higher concentration of Hg2+ ions, 824 µM, the photoluminescence was completely extinguished.
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