[数字PCR作为一种高灵敏度诊断工具:综述]。

K V Kopylova, Ed W Kasparov, I V Marchenko, M V Smolnikova
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引用次数: 0

摘要

数字聚合酶链式反应(dPCR)是一种广泛用于基因分析的核酸定量方法。与其他方法相比,dPCR最显著的优点之一是可以在不构建校准曲线的情况下对遗传物质进行绝对定量测定,这甚至可以检测核酸的单个分子,从而提供疾病的早期诊断。dPCR的一个特定特征是在每个微反应中检测被分析的生物对象,然后在二元系统中呈现分析结果,从而为该方法命名。目前的工作显示了开发dPCR方法的关键方面,即从第一批基于微流控芯片技术的设备到能够测量浓度高达十万分之一的靶标的现代系统。我们分析了使用dPCR检测各种病原体的数据,并总结了各种研究结果,证明了该方法的创新性。介绍了多重dPCR分析的可能性及其在临床实践中的潜力。这篇综述还讨论了dPCR在开发非侵入性肿瘤疾病分析方法中的作用问题。强调了开发dPCR技术的可能方法,包括将其用作“护理点”系统。
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[Digital PCR as a Highly Sensitive Diagnostic Tool: A Review].

Digital PCR (dPCR) is a nucleic acid quantification method that is widely used in genetic analysis. One of the most significant advantages of dPCR over other methods is the possibility of absolute quantitative determination of genetic material without construction of calibration curves, which allows one to detect even single molecules of nucleic acids, and, hence, provides early diagnosis of diseases. One specific characteristic of dPCR is the detection of the analyzed biological object in each microreaction, followed by the presentation of the analysis results in a binary system, thereby giving the method its name. The key aspects of developing the dPCR method, i.e., from the first devices based on microfluidic chip technology to modern systems capable of measuring a target at a concentration of up to 1 in 100000 copies are shown in the current work. We analyzed the data on the detection of various pathogens using dPCR, as well as summarizing various study results demonstrating the innovativeness of this method. Both the possibilities of multiplex dPCR analysis and its potential in clinical practice are presented. This review also addresses the issue of the role of dPCR in the development of noninvasive methods for analysis of oncological diseases. Possible ways of developing dPCR technology were emphasized, including its use as a "point-of-care" system.

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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
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