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Analytical Validation of Telomere Analysis Technology? for the High-Throughput Analysis of Multiple Telomere-Associated Variables

机译:端粒分析技术的分析验证?对于多个端粒相关变量的高通量分析

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Background:A large number of studies have suggested a correlation between the status of telomeres and disease risk. High-throughput quantitative fluorescence in situ hybridization (HT Q-FISH) is a highly accurate telomere measurement technique that can be applied to the study of large cell populations. Here we describe the analytical performance testing and validation of Telomere Analysis Technology (TAT?), a laboratory-developed HT Q-FISH-based methodology that includes HT imaging and software workflows that provide a highly detailed view of telomere populations.Methods:TAT was developed for the analysis of telomeres in peripheral blood mononuclear cells (PBMCs). TAT was compared with Terminal Restriction Fragment (TRF) length analysis, and tested for accuracy, precision, limits of detection (LOD) and specificity, reportable range and reference range.Results:Using 6 different lymphocyte cell lines, we found a high correlation between TAT and TRF for telomere length (Rsup2/sup?≥?0.99). The standard variation (assay error) of TAT was 454 base pairs, and the limit of detection of 800 base pairs. A standard curve was constructed to cover human median reportable range values and defined its lower limit at 4700?bp and upper limits at 14,400?bp. Using TAT, up to 223 telomere associated variables (TAVs) can be obtained from a single sample. A pilot, population study, of telomere analysis using TAT revealed high accuracy and reliability of the methodology.Conclusions:Analytical validation of TAT shows that is a robust and reliable technique for the characterization of a detailed telomere profile in large cell populations. The combination of high-throughput imaging and software workflows allows for the collection of a large number of telomere-associated variables from each sample, which can then be used in epidemiological and clinical studies.? The Author(s). 2020.
机译:背景:大量研究表明端粒和疾病风险的状况之间存在相关性。原位杂交(HT Q-FISH)的高通量定量荧光是一种高度精确的端粒测量技术,可应用于大细胞群的研究。在这里,我们描述了端粒分析技术的分析性能测试和验证,实验室开发的HT Q-Fish的方法,包括HT成像和软件工作流程,提供了极其对端子人口的看法。方法:TAT是开发用于分析外周血单核细胞(PBMC)的端粒。与终端限制性片段(TRF)长度分析进行比较,并测试精度,精确度,检测限制(LOD)和特异性,可报告范围和参考范围。结果:使用6种不同的淋巴细胞细胞系,我们发现了高的相关性TAT和TRF用于端粒长度(R 2 ?≥≤0.99)。 TAT的标准变化(测定误差)为454个碱基对,以及800个碱基对的检测限。构建标准曲线以涵盖人中中值可报告范围值,并在4700℃下限定其下限和14,400磅的上限。使用TAT,可以从单个样本获得最多223个端子相关的变量(TAV)。使用TAT的端粒分析的飞行员分析揭示了方法的高精度和可靠性。结论:TAT的分析验证表明,这是一种坚固且可靠的技术,用于表征大型细胞群中的详细端粒性曲线。高通量成像和软件工作流的组合允许从每个样品中收集大量端粒相关变量,然后可以用于流行病学和临床研究。作者。 2020。

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