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High Specific and Ultrasensitive Isothermal Detection of MicroRNA by Padlock Probe-Based Exponential Rolling Circle Amplification

机译:基于挂锁探针的指数滚环扩增技术对MicroRNA的高特异性和超灵敏等温检测

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摘要

In this paper, a padlock probe-based exponential rolling circle amplification (P-ERCA) assay is developed for highly specific and sensitive detection of microRNA (miRNA). The padlock probe is composed of a hybridization sequence to miRNA and a nicking site for nicking endonuclease. Using the miRNA as a template, specific ligation to the padlock probe and linear rolling circle reaction (LRCA) are achieved under isothermal conditions. After multiple nicking reactions, many copies of short DNA products are successively produced and then used as triggers in next circle amplification. Thus, a small amount of miRNAs are converted to a large number of triggers to initiate the rolling circle amplification reaction, and circular exponential signal amplification is achieved. This padlock probe-based exponential rolling circle amplification assay exhibits a remarkable sensitivity of 0.24 zmol using optimized sequences of the padlock probe. The target-dependent circularization of the padlock probe and the ligation reaction could improve the specificity effectively, leading to single--nucleotide difference discrimination between miRNA family members. The miRNA analysis in human lung cells was performed with this method. The result indicates this highly sensitive P-ERCA strategy will become a promising miRNA quantification method in early clinical diagnostics.
机译:在本文中,开发了一种基于挂锁探针的指数滚环扩增(P-ERCA)测定法,用于高特异性和灵敏地检测微小RNA(miRNA)。挂锁探针由与miRNA的杂交序列和用于切割核酸内切酶的切割位点组成。使用miRNA作为模板,可以在恒温条件下实现与挂锁探针的特异性连接和线性滚环反应(LRCA)。经过多次切口反应后,会连续生成许多短DNA产物副本,然后用作下一个循环扩增的触发条件。因此,少量的miRNA被转换为大量的触发器以启动滚环扩增反应,并实现了环指数信号的扩增。使用挂锁探针的优化序列,基于挂锁探针的指数滚环扩增测定法显示出0.24 zmol的出色灵敏度。挂锁探针的靶标依赖性环化和连接反应可有效提高特异性,从而导致miRNA家族成员之间的单核苷酸差异区分。用这种方法进行人肺细胞中的miRNA分析。结果表明,这种高度敏感的P-ERCA策略将成为早期临床诊断中有希望的miRNA定量方法。

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