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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Molecular Beacon–Based Temperature Control and Automated Analyses for Improved Resolution of Melting Temperature Analysis Using SYBR I Green Chemistry
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Molecular Beacon–Based Temperature Control and Automated Analyses for Improved Resolution of Melting Temperature Analysis Using SYBR I Green Chemistry

机译:基于分子信标的温度控制和自动化分析,可提高使用SYBR I绿色化学方法进行熔解温度分析的分辨率

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Background: Melting temperature analysis of products amplified with SYBR I Green chemistry is a cheap and effective method for identification of sequence differences. When used in conventional quantitative real-time PCR instruments (qPCR), this method is limited by temperature variations over the heating block and low numbers of fluorescence measurements during the dissociation step, which hamper the ability of most instruments to report accurate and precise melting temperatures.Methods: We designed a molecular beacon–based temperature indicator probe (Tm-probe) to control for variations in temperatures over the heating block of the instrument. In addition, we wrote an automated curve-fit analysis algorithm of dissociation data to use multiple data points with a gaussian curve fit to extrapolate precise melting temperatures.Results: Use of the Tm-probe in conjunction with the analysis algorithm and multiple dissociations improved SDs of melting temperatures over a 96-well plate from 0.19 to 0.06 °CConclusions: Melting temperature analyses with SYBR I Green chemistry on conventional qPCR instruments can be improved by the use of a Tm-probe in conjunction with curve-fit analysis of data. Resolution improvement up to 3-fold is possible and allows additional melting temperatures to be identified.
机译:背景:用SYBR I扩增的产物的熔解温度分析绿色化学是鉴定序列差异的一种廉价而有效的方法。当在常规定量实时PCR仪器(qPCR)中使用时,该方法受到加热块上温度变化和解离步骤中荧光测量数量少的限制,这妨碍了大多数仪器报告准确和精确的解链温度的能力方法:我们设计了一种基于分子信标的温度指示器探针(Tm-probe),以控制仪器加热块上温度的变化。此外,我们编写了解离数据的自动曲线拟合分析算法,以使用具有高斯曲线拟合的多个数据点来推断精确的熔融温度。在96孔板上的融解温度从0.19到0.06°C的结论。结论:通过使用Tm-probe结合数据的曲线拟合分析,可以改善常规qPCR仪器上SYBR I Green化学方法的融化温度分析。分辨率提高到三倍是可能的,并且可以确定其他熔化温度。

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