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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Circular exponential amplification of photoinduced electron transfer using hairpin probes, G-quadruplex DNAzyme and silver nanocluster-labeled DNA for ultrasensitive fluorometric determination of pathogenic bacteria
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Circular exponential amplification of photoinduced electron transfer using hairpin probes, G-quadruplex DNAzyme and silver nanocluster-labeled DNA for ultrasensitive fluorometric determination of pathogenic bacteria

机译:使用发夹探针,G-Quadrepled DNAzyme和银纳米膨胀蛋白标记的DNA进行光致电子转移的循环指数扩增,用于超细荧光测定病原细菌的测定

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The authors describe a fluorometric strategy for the detection of pathogenic bacteria with ultrasensitivity and high specificity. This strategy relies on the combination of target-modulated photoinduced electron transfer (PET) between G-quadruplex DNAzyme and DNA (labeled with silver nanoclusters) along with hairpin probe-based circular exponential amplification. The reaction system involves three hairpin probes (H1, H2 and H3). Probe H1 contains an aptamer against S. Typhimurium and the recognition sequence for nicking endonuclease. It is used to recognize S. Typhimurium and participates in polymerase-catalyzed target recycle amplification and secondary-target recycle amplification. Probe H2 contains an aptamer against hemin and is used to form the G-quadruplex DNAzyme in the presence of hemin and potassium ion. It acts as the electron acceptor and quenches the fluorescence of the labeled DNA. Fluorescence is best measured at excitation/emission wavelengths of 567/650 nm. Probe H3 contains the template sequence for the synthesis of AgNCs and the H2-annealing sequence. Both H2 and H3 are utilized to perform a strand displacement reaction and to achieve PET between G-quadruplex DNAzyme and DNA/AgNCs. To the best of our knowledge, this is the first example of a PET between G-quadruplex DNAzyme and DNA/AgNCs coupled with circular exponential amplification. The assay has an ultra-low detection limit 8 cfu.mL(-1) of S. Typhimurium. The assay is rapid, accurate, inexpensive and simple. Hence, the strategy may represent a useful platform for ultrasensitive and highly specific detection of pathogenic bacteria as encountered in food analysis and clinical diagnosis.
机译:作者描述了具有超细胞增强性和高特异性的致病性细菌的荧光策略。该策略依赖于G-Quadreplexyme和DNA(用银纳米团簇标记)之间的目标调制的光抑制电子转移(PET)的组合以及发夹探针的圆形指数放大。反应体系涉及三种发夹探针(H1,H2和H3)。探针H1含有针对伤寒伤寒的适体和识别内切核酸酶的识别序列。它用于识别伤寒伤寒蕈类并参与聚合酶催化的靶循环扩增和二次靶循环扩增。探针H2含有针对血红素的适体,用于在血红素和钾离子存在下形成G-QuadrepledDNazyme。它充当电子受体并淬灭标记DNA的荧光。在567/650nm的激发/发射波长下最佳测量荧光。探针H3含有用于合成AgNC和H 2退火序列的模板序列。 H2和H3都用于进行链位移反应并在G-Quadrepledyme和DNA / AgNC之间实现PET。据我们所知,这是G-Quadreplexyme与与循环指数放大的DNA / AGNC之间的宠物的第一个例子。该测定具有超低检测限8 CFU.ML(-1)的S. Typhimurium。测定快速,准确,便宜且简单。因此,该策略可以代表食品分析和临床诊断中遇到的致病性细菌的超细胞膜和高度特异性检测的有用平台。

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