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A highly sensitive and selective fluorescent probe without quencher for detection of Pb2+ ions based on aggregation-caused quenching phenomenon

机译:一种无猝灭剂的高灵敏度,高选择性荧光探针,可根据聚集引起的猝灭现象检测Pb2 +离子

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摘要

Lead is a highly toxic heavy metal, and various functional nucleic acid (FNA)-based biosensors have been developed for the detection of Pb ~(2+) in environmental monitoring. However, most fluorescence biosensors that have been reported were designed on the basis of a double-labeled (fluorophore and quencher group) DNA sequence, which not only involved an inconvenient organic synthesis but also restricted their wider use in practical applications. Here, we utilized a G-rich DNA sequence as a recognition probe and conjugated fluorene (CF) to develop a fluorescence sensor without a quencher based on the aggregation-caused quenching (ACQ) effect. In the presence of Pb ~(2+) , the degree of aggregation of CF was reduced because Pb ~(2+) induced the formation of a G-quadruplex structure of the CF-DNA probe, and the fluorescence signal increased with the concentration of Pb ~(2+) (0–1 μM), with a limit of detection of 0.36 nM. This fluorescent probe without a quencher enables the sensitive and selective detection of Pb ~(2+) . On the basis of these advantages, the CF-DNA probe represents a promising analytical method for detecting Pb ~(2+) .
机译:铅是一种剧毒的重金属,已开发出各种基于功能核酸(FNA)的生物传感器,用于在环境监测中检测Pb〜(2+)。但是,已报道的大多数荧光生物传感器都是基于双标记(荧光团和淬灭基团)DNA序列设计的,该序列不仅涉及有机合成的不便,而且限制了其在实际应用中的广泛使用。在这里,我们利用富含G的DNA序列作为识别探针,并利用共轭芴(CF)开发了一种基于聚集体引起的猝灭(ACQ)效应而无需猝灭剂的荧光传感器。在Pb〜(2+)存在下,CF的聚集度降低,因为Pb〜(2+)诱导了CF-DNA探针的G-四链体结构的形成,并且荧光信号随浓度的增加而增加。 Pb〜(2+)(0–1μM)的最大检出限为0.36 nM。这种没有淬灭剂的荧光探针能够灵敏和选择性地检测Pb〜(2+)。基于这些优点,CF-DNA探针代表了一种检测Pb〜(2+)的有前途的分析方法。

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