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无标记比率荧光法检测 Pb 结构特异性荧光染料及双重信号放大。

Label-free ratiometric fluorescence detection of Pb structure-specific fluorescent dyes and dual signal amplification.

机构信息

College of Food Science and Technology, Henan Key Laboratory of Cereal and Oil Food Safety Inspection and Control, Henan University of Technology, Zhengzhou 450001, China.

出版信息

Anal Methods. 2024 Sep 19;16(36):6229-6240. doi: 10.1039/d4ay01369g.

Abstract

Lead ions (Pb) are a widely distributed and highly toxic heavy metal pollutant, which seriously threatens the environment, economy and human safety. Here, a label-free ratiometric fluorescent biosensor was constructed for Pb detection using DNAzyme-driven target cycling and exonuclease III (Exo III)-mediated DNA cycling as a dual signal amplification strategy. The SYBR Green I (SGI) and -methyl mesoporphyrin IX (NMM) used in this study are characterized by low cost, storage resistance, and short preparation time compared with conventional signaling probes labeled with fluorescent groups. Unlike the single-emission fluorescence strategy, monitoring the fluorescence intensity ratio of SGI and NMM can effectively reduce external interference to achieve accurate detection of Pb. DNAzyme structures on the surface of magnetic beads (MBs) can recognize Pb and activate the target circulatory system to cleave single-stranded DNA (ssDNA). The ssDNA further initiated the Exo III-assisted DNA circulatory system to digest double-stranded DNA (dsDNA) and release guanine-rich G1. Finally, the fluorescence signals of SGI and NMM were weakened and enhanced, respectively. The sensing strategy achieved a wide linear range from 0.5 to 500 nM and a low limit of detection (LOD) of 26.4 pM. Furthermore, its anti-interference ability and potential applicability for Pb detection in actual samples were verified. This work ingeniously combines the dual signal amplification strategy with the ratiometric sensing strategy constructed by structure-specific fluorescent dyes, which provides a promising method for constructing sensitive and accurate fluorescent biosensors.

摘要

铅离子(Pb)是一种广泛分布且毒性很高的重金属污染物,严重威胁着环境、经济和人类安全。在这里,我们构建了一种无标记的比率荧光生物传感器,用于使用 DNA 酶驱动的靶循环和外切酶 III(Exo III)介导的 DNA 循环作为双重信号放大策略来检测 Pb。与传统的用荧光基团标记的信号探针相比,本研究中使用的 SYBR Green I(SGI)和 -甲基 mesoporphyrin IX(NMM)具有成本低、储存稳定性好和制备时间短的特点。与单发射荧光策略不同,监测 SGI 和 NMM 的荧光强度比可以有效地减少外部干扰,从而实现对 Pb 的准确检测。磁珠(MBs)表面上的 DNA 酶结构可以识别 Pb 并激活靶循环系统以切割单链 DNA(ssDNA)。ssDNA 进一步引发 Exo III 辅助的 DNA 循环系统来消化双链 DNA(dsDNA)并释放富含鸟嘌呤的 G1。最后,SGI 和 NMM 的荧光信号分别减弱和增强。该传感策略实现了从 0.5 到 500 nM 的宽线性范围和低检测限(LOD)为 26.4 pM。此外,还验证了其抗干扰能力和在实际样品中检测 Pb 的潜在适用性。这项工作巧妙地将双重信号放大策略与结构特异性荧光染料构建的比率传感策略相结合,为构建灵敏、准确的荧光生物传感器提供了一种有前途的方法。

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