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首页> 外文期刊>Mitochondrial DNA, Part A >Droplet digital PCR technology promises new applications and research areas
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Droplet digital PCR technology promises new applications and research areas

机译:液滴数字PCR技术有望带来新的应用和研究领域

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摘要

Digital Polymerase Chain Reaction (dPCR) is used to quantify nucleic acids and its applications are in the detection and precise quantification of low-level pathogens, rare genetic sequences, quantification of copy number variants, rare mutations andin relative gene expressions. Here the PCR is performed in large number of reaction chambers or partitions and the reaction is carried out in each partition individually. This separation allows a more reliable collection and sensitive measurement of nucleic acid. Results are calculated by counting amplified target sequence (positive droplets) and the number of partitions in which there is no amplification (negative droplets). The mean number of target sequences was calculated by Poisson Algorithm. Poisson correction compensates the presence of more than one copy of target gene in any droplets. The method provides information with accuracy and precision which is highly reproducible and less susceptible to inhibitors than qPCR. It has been demonstrated in studying variations in gene sequences, such as copy number variants and point mutations, distinguishing differences between expression of nearly identical alleles, assessment of clinically relevant genetic variations and it is routinely used for clonalamplification of samples for NGS methods. dPCR enables more reliable predictors of tumor status and patient prognosis by absolute quantitation using reference normalizations. Rare mitochondrial DNA deletions associated with a range of diseases and disorders as well as aging can be accurately detected with droplet digital PCR.
机译:数字聚合酶链反应(dPCR)用于定量核酸,其应用包括检测和精确定量低水平病原体,稀有遗传序列,定量拷贝数变体,稀有突变以及相关基因表达。在此,PCR在大量的反应室或隔室中进行,并且反应在各个隔室中分别进行。这种分离可以更可靠地收集核酸并进行灵敏的测量。通过计算扩增的靶序列(阳性液滴)和没有扩增的分区数(阴性液滴)来计算结果。通过泊松算法计算靶序列的平均数。泊松校正可补偿任何液滴中多于一个拷贝的靶基因的存在。该方法提供的信息具有准确性和精确性,与qPCR相比,该信息具有很高的可重复性并且对抑制剂的敏感性较低。在研究基因序列的变异(例如拷贝数变异和点突变),区分几乎相同的等位基因表达之间的差异,评估临床相关的遗传变异方面已得到证明,并且它通常用于NGS方法的样品克隆扩增。 dPCR通过使用参考归一化进行绝对定量,可以更可靠地预测肿瘤状态和患者的预后。液滴数字PCR可准确检测与多种疾病和病症以及衰老相关的罕见线粒体DNA缺失。

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