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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >A cascade amplification strategy of catalytic hairpin assembly and hybridization chain reaction for the sensitive fluorescent assay of the model protein carcinoembryonic antigen
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A cascade amplification strategy of catalytic hairpin assembly and hybridization chain reaction for the sensitive fluorescent assay of the model protein carcinoembryonic antigen

机译:催化发夹组装和敏化荧光测定杂交型蛋白质甲醛抗原敏感荧光测定的级联扩增策略

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摘要

A cascade nucleic acid amplification strategy is presented for fluorometric aptamer based determination of the model protein carcinoembryonic antigen (CEA). Amplification is accomplished by combining catalytic hairpin assembly (CHA) and hybridization chain reaction (HCR). In this assay, a specially designed single-stranded DNA containing the aptamer sequence (AS) specific for CEA is hybridized with an inhibitor strand (IS) to form a double-stranded DNA (IS@AS). In the presence of CEA, it will recognize and bind to the AS strand which causes the release of IS. By introducing two DNA hairpins (H1 and H2; these containing complementary sequences) CHA will be activated via the hybridization reactions of H1 and H2. This is accompanying by the formation of a double-stranded DNA (H1-H2) and the release of CEA@AS. The liberated CEA@AS further drives successive recycling of the CHA, thereby generating further copies of H1-H2. The resultant H1-H2 hybrids act as primers and trigger HCR with the help of other two DNA hairpins (H3 and H4) containing G-rich toehold at the 5'-terminus and 3'-terminus of H3 and H4, respectively. The fluorescent probe N-methyl mesoporphyrin IX (NMM) is finally intercalated into the G-rich domains of the long DNA nanostructures due to formation of G-quadruplex structures. This generates a fluorescent signal (best measured at excitation/emission wavelengths of 399/610 nm) that increases with the concentration of target (CEA). This aptamer-based fluorescence assay is highly sensitive and has a linear range that covers the 1 pg.mL(-1) to 2 ng.mL(-1) CEA concentration range, with a 0.3 pg.mL(-1) detection limit.
机译:提出了级联核酸扩增策略用于基于荧光素适体的模型癌胚抗原(CEA)的测定。通过组合催化发夹组合(CHA)和杂交链反应(HCR)来实现扩增。在该测定中,用抑制剂链(AS)杂交以形成双链DNA(是@ AS)的特定设计的含有适体序列的单链DNA(AS)。在CEA的存在下,它将识别和结合作为释放的作为链。通过引入两种DNA发夹(H1和H2;这些含有互补序列)将通过H1和H 2的杂交反应激活CHA。这通过形成双链DNA(H1-H2)和CEA @的释放来伴随。被解放的CEA @作为进一步推动CHA的连续回收,从而产生H1-H2的进一步副本。所得H1-H2杂交物分别用含有含有G-富荷荷尔的其他两种DNA发夹(H3和H4)作为引物和触发HCR的引物和触发H3和H4的3'-末端。由于G-四边形结构的形成,最终将荧光探针N-甲基甲基卟啉IX(NMM)嵌入到长DNA纳米结构的富含G的结构域中。这产生荧光信号(在激发/发射波长为399/610nm的激发波长测量),其随目标(CEA)的浓度而增加。这种基于适体的荧光测定是高敏感的并且具有覆盖1pg.ml(-1)至2ng.ml(-1)CEA浓度范围的线性范围,其中0.3pg.ml(-1)检测限。

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