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基于适配体/报告分子缀合物的汞(II)和铅(II)离子荧光检测。

Fluorescence detection of mercury(II) and lead(II) ions using aptamer/reporter conjugates.

机构信息

Department of Chemistry, National Changhua University of Education, Changhua, Taiwan, ROC.

出版信息

Talanta. 2011 Apr 15;84(2):324-9. doi: 10.1016/j.talanta.2011.01.016. Epub 2011 Jan 15.

Abstract

We have developed a fluorescence technique for the detection of Hg(2+) and Pb(2+) ions using polythymine (T(33))/benzothiazolium-4-quinolinium dimer derivative (TOTO-3) and polyguanine (G(33))/terbium ions (Tb(3+)) conjugates, respectively. Hg(2+) ions induce T(33) to form folded structures, leading to increased fluorescence of the T(33)/TOTO-3 conjugates. Because Pb(2+) ions compete with Tb(3+) ions to form complexes with G(33), the extent of formation of the G(33)-Tb(3+) complexes decreases upon increasing the Pb(2+) concentration, leading to decreased fluorescence at 545 nm when excited at 290 nm. To minimize interference from Hg(2+) ions during the detection of Pb(2+) ions, we conducted two-step fluorescence measurements; prior to addition of the G(33)/Tb(3+) probe, we recorded the fluorescence of a mixture of the T(33)/TOTO-3 conjugates and Hg(2+) ions. The fluorescence signal obtained was linear with respect to the Hg(2+) concentration over the range 25.0-500 nM (R(2)=0.99); for Pb(2+) ions, it was linear over the range 3.0-50 nM (R(2)=0.98). The limits of detection (at a signal-to-noise ratio of 3) for Hg(2+) and Pb(2+) ions were 10.0 and 1.0 nM, respectively. Relative to other techniques for the detection of Hg(2+) and Pb(2+) ions in soil and water samples, our present approach is simpler, faster, and more cost-effective.

摘要

我们开发了一种使用聚胸腺嘧啶(T(33))/苯并噻唑-4-喹啉二聚体衍生物(TOTO-3)和聚鸟嘌呤(G(33))/铽离子(Tb(3+))分别检测 Hg(2+)和 Pb(2+)离子的荧光技术。Hg(2+)离子诱导 T(33)形成折叠结构,导致 T(33)/TOTO-3 缀合物的荧光增强。由于 Pb(2+)离子与 Tb(3+)离子竞争形成与 G(33)的配合物,随着 Pb(2+)浓度的增加,G(33)-Tb(3+)配合物的形成程度降低,当在 290nm 激发时,在 545nm 处的荧光降低。为了在检测 Pb(2+)离子时最小化 Hg(2+)离子的干扰,我们进行了两步荧光测量;在添加 G(33)/Tb(3+)探针之前,我们记录了 T(33)/TOTO-3 缀合物和 Hg(2+)离子混合物的荧光。获得的荧光信号与 Hg(2+)浓度在 25.0-500nM 范围内呈线性关系(R(2)=0.99);对于 Pb(2+)离子,在 3.0-50nM 范围内呈线性关系(R(2)=0.98)。Hg(2+)和 Pb(2+)离子的检测限(信噪比为 3)分别为 10.0 和 1.0 nM。与土壤和水样中检测 Hg(2+)和 Pb(2+)离子的其他技术相比,我们目前的方法更简单、更快、更具成本效益。

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