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Sensitive Detection of MicroRNAs with Hairpin Probe-Based Circular Exponential Amplification Assay

机译:基于基于发夹探针的圆指数扩增分析灵敏检测微小RNA

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MicroRNAs (miRNAs) play important regulatory roles in a wide range of biological processes, and their aberrant expression is associated with cancer development and a variety of diseases. Here, we develop a simple, sensitive, and specific miRNA assay on the basis of circular exponential amplification in combination with the hairpin probes. The binding of target miRNA with a linear DNA template initiates the first strand displacement amplification (SDA) and generates the universal triggers which are complementary to the 3' protruding end of a hairpin probe. These universal triggers function not only as the primers to unfold the hairpin probes through an extension reaction, generating distinct fluorescence signals, but also as the amplification templates to initiate the second SDA reaction. Moreover, the second SDA reaction can release new triggers to initiate the above two consecutive SDA reactions, thus constituting a circular exponential amplification which enables the conversion of a small amount of miRNAs to a large number of universal triggers to unfold abundant hairpin probes. This hairpin probe-based circular exponential amplification assay exhibits high sensitivity with a detection limit of 3.80 X 10~(-13) M and a detection range of 4 orders of magnitude. It can even discriminate single-nucleotide difference between miRNA family members and perform well in real sample analysis. Notably, in this assay, the long-stem hairpin probes are unfolded through an extension reaction rather than through a conventional hybridization reaction controlled by the thermodynamic equilibrium in the case of molecular beacons, making the design of hairpin probes very simple. This hairpin probe-based circular exponential amplification assay holds a great promise for further application in biomedical research and early clinical diagnosis.
机译:MicroRNA(miRNA)在广泛的生物学过程中起着重要的调节作用,其异常表达与癌症的发展和多种疾病有关。在这里,我们结合发夹式探针,在圆指数扩增的基础上开发了一种简单,灵敏且特异的miRNA分析方法。靶标miRNA与线性DNA模板的结合启动第一链置换扩增(SDA),并产生与发夹探针3'突出端互补的通用触发。这些通用触发器不仅用作通过延伸反应展开发夹探针的引物,产生独特的荧光信号,而且还用作引发第二次SDA反应的扩增模板。此外,第二个SDA反应可以释放新的引发剂来启动上述两个连续的SDA反应,从而构成了循环指数扩增,从而能够将少量的miRNA转化为大量的通用引发剂,从而展开丰富的发夹探针。这种基于发夹探针的圆形指数扩增测定法具有高灵敏度,检测极限为3.80 X 10〜(-13)M,检测范围为4个数量级。它甚至可以区分miRNA家族成员之间的单核苷酸差异,并在实际样品分析中表现良好。值得注意的是,在该测定法中,在分子信标的情况下,长杆发夹探针通过延伸反应而不是通过热力学平衡控制的常规杂交反应展开,这使得发夹探针的设计非常简单。这种基于发夹探针的圆形指数扩增测定法在生物医学研究和早期临床诊断中具有广阔的应用前景。

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