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Sigmoidal curve-fitting redefines quantitative real-time PCR with the prospective of developing automated high-throughput applications

机译:S型曲线拟合重新定义了定量实时PCR,并有望开发自动化的高通量应用

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摘要

Quantitative real-time PCR has revolutionized many aspects of genetic research, biomedical diagnostics and pathogen detection. Nevertheless, the full potential of this technology has yet to be realized, primarily due to the limitations of the threshold-based methodologies that are currently used for quantitative analysis. Prone to errors caused by variations in reaction preparation and amplification conditions, these approaches necessitate construction of standard curves for each target sequence, significantly limiting the development of high-throughput applications that demand substantive levels of reliability and automation. In this study, an alternative approach based upon fitting of fluorescence data to a four-parametric sigmoid function is shown to dramatically increase both the utility and reliability of quantitative real-time PCR. By mathematically modeling individual amplification reactions, quantification can be achieved without the use of standard curves and without prior knowledge of amplification efficiency. Combined with provision of quantitative scale via optical calibration, sigmoidal curve-fitting could confer the capability for fully automated quantification of nucleic acids with unparalleled accuracy and reliability.
机译:实时定量PCR已彻底改变了基因研究,生物医学诊断和病原体检测的许多方面。然而,主要由于当前用于定量分析的基于阈值的方法的局限性,该技术的全部潜力尚未实现。这些方法容易因反应制备和扩增条件的变化而引起错误,因此有必要为每个靶序列构建标准曲线,从而极大地限制了需要高水平可靠性和自动化程度的高通量应用的开发。在这项研究中,基于荧光数据拟合四参数乙状结肠功能的替代方法显示出可大大提高定量实时PCR的实用性和可靠性。通过对单个扩增反应进行数学建模,无需使用标准曲线且无需事先了解扩增效率即可实现定量。结合通过光学校准提供定量标度,S形曲线拟合可以赋予核酸全自动定量的能力,且具有无与伦比的准确性和可靠性。

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