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全血及血细胞亚群中端粒长度测量不同方法的比较:血液系统疾病中端粒长度测量的建议

Comparison of different methods for telomere length measurement in whole blood and blood cell subsets: Recommendations for telomere length measurement in hematological diseases.

作者信息

Behrens Yvonne Lisa, Thomay Kathrin, Hagedorn Maike, Ebersold Juliane, Henrich Lea, Nustede Rainer, Schlegelberger Brigitte, Göhring Gudrun

机构信息

Department of Human Genetics, Hannover Medical School, Carl-Neuberg-Str.1, Hannover, 30625, Germany.

Pediatric surgery, Hannover Medical School, Carl-Neuberg-Str.1, Hannover, 30625, Germany.

出版信息

Genes Chromosomes Cancer. 2017 Sep;56(9):700-708. doi: 10.1002/gcc.22475. Epub 2017 Jul 3.

Abstract

Different methods of telomere length measurement are used to identify patients with telomeropathies. In our lab, we established four different methods for telomere length measurement, terminal restriction fragment (TRF) analysis by Southern blot analysis, quantitative PCR (qPCR), quantitative telomere/centromere fluorescence in situ hybridization (T/C-FISH) and fluorescence in situ hybridization combined with flow cytometry (FlowFISH). The methods each have distinct properties and apart from this-according to our experience and data-may have an impact on the individual result. In this study, we therefore compared and validated these methods measuring 154 healthy individuals of different age groups (newborn-81 years). A linear decline was found for every method (Southern blotting 64 bp per year; qPCR 31 bp per year; T/C-FISH 36 bp per year; FlowFISH 50 bp per year). With the equation of the regression line the values of each method (T/S ratio, T/C value, RTL value) can be expressed in absolute kb. All methods showed acceptable accuracy. The analysis indicated good agreement between all methods, with the best agreement between T/C-FISH and FlowFISH. Here, FlowFISH was the most precise, accurate, and reproducible method compared to the other methods. Based on our data, we emphasize the influence of expertise and experience that is required to produce robust and reliable telomere length analyses. Furthermore, we want to provide the scientific community working in diagnostics and research with data-funded advice on how to choose the appropriate method to safely discriminate between natural variability and pathological telomere shortening in individual cases.

摘要

不同的端粒长度测量方法被用于识别患有端粒病的患者。在我们实验室,我们建立了四种不同的端粒长度测量方法,即通过Southern印迹分析进行的末端限制片段(TRF)分析、定量PCR(qPCR)、定量端粒/着丝粒荧光原位杂交(T/C-FISH)以及结合流式细胞术的荧光原位杂交(FlowFISH)。这些方法各自具有不同的特性,并且根据我们的经验和数据,可能会对个体结果产生影响。因此,在本研究中,我们比较并验证了这些方法,测量了154名不同年龄组(新生儿至81岁)的健康个体。发现每种方法都呈线性下降(Southern印迹法每年下降64 bp;qPCR每年下降31 bp;T/C-FISH每年下降36 bp;FlowFISH每年下降50 bp)。利用回归线方程,每种方法的值(T/S比值、T/C值、RTL值)都可以用绝对kb表示。所有方法都显示出可接受的准确性。分析表明所有方法之间具有良好的一致性,其中T/C-FISH和FlowFISH之间的一致性最佳。在此,与其他方法相比,FlowFISH是最精确、准确且可重复的方法。基于我们的数据,我们强调了进行稳健且可靠的端粒长度分析所需的专业知识和经验的影响。此外,我们希望为从事诊断和研究的科学界提供有数据支持的建议,说明如何选择合适的方法,以便在个体病例中安全地区分自然变异和病理性端粒缩短。

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