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Comparison of telomere length measurement methods

机译:端粒长度测量方法的比较

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摘要

The strengths and limitations of the major methods developed to measure telomere lengths (TLs) in cells and tissues are presented in this review. These include Q-PCR (Quantitative Polymerase Chain Reaction), TRF (Terminal Restriction Fragment) analysis, a variety of Q-FISH(Quantitative Fluorescence In Situ Hybridization) methods, STELA (Single TElomere Length Analysis) and TeSLA (Telomere Shortest Length Assay). For each method, we will cover information about validation studies, including reproducibility in independent laboratories, accuracy, reliability and sensitivity for measuring not only the average but also the shortest telomeres. There is substantial evidence that it is the shortest telomeres that trigger DNA damage responses leading to replicative senescence in mammals. However, the most commonly used TL measurement methods generally provide information on average or relative TL, but it is the shortest telomeres that leads to telomere dysfunction (identified by TIF, Telomere dysfunction Induced Foci) and limit cell proliferation in the absence of a telomere maintenance mechanism, such as telomerase. As the length of the shortest telomeres is a key biomarker determining cell fate and the onset of senescence, a new technique (TeSLA) that provides quantitative information about all the shortest telomeres will be highlighted.
机译:在本综述中提出了在细胞和组织中测量细胞和组织中的主要方法的强度和限制。这些包括Q-PCR(定量聚合酶链反应),TRF(末端限制性片段)分析,各种Q鱼(定量荧光原位杂交)方法,Stela(单端粒度长度分析)和特斯拉(端粒最短长度测定) 。对于每种方法,我们将涵盖有关验证研究的信息,包括在独立实验室,准确性,可靠性和灵敏度中的可重复性,而不仅可以衡量平均值,而且是最短的端粒。存在大量证据表明它是触发DNA损伤的最短端粒,导致哺乳动物中复制衰老。然而,最常用的TL测量方法通常提供平均或相对TL的信息,但它是导致端粒功能障碍(由TIF,端粒功能障碍诱导的焦点鉴定)和限制细胞增殖在没有端粒维护的情况下限制细胞增殖机制,如端粒酶。随着最短端粒的长度是一个关键的生物标志物确定细胞命运和衰老的发作,将突出显示关于所有最短端粒化的数量信息的新技术(特斯拉)。

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