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Multiplex time-reducing quantitative polymerase chain reaction assay for determination of telomere length in blood and tissue DNA

机译:多重减少时间的定量聚合酶链反应法测定血液和组织DNA中的端粒长度

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In this paper we describe a multiplex time-reducing quantitative polymerase chain reaction (qPCR) method for determination of telomere length. This multiplex qPCR assay enables two pairs of primers to simultaneously amplify telomere and single copy gene (albumin) templates, thus reducing analysis time and labor compared with the previously established singleplex assay. The chemical composition of the master mix and primers for the telomere and albumin were systematically optimized. The thermal cycling program was designed to ensure complete separation of the melting processes of the telomere and albumin. Semi-log standard curves of DNA concentration versus cycle threshold (C t) were established, with a linear relationship over an 81-fold DNA concentration range. The well-performed intra-assay (RSD range 2.4–4.7%) and inter-assay (RSD range: 3.1–5.0%) reproducibility were demonstrated to ensure measurement stability. Using wild-type, Lewis lung carcinoma and H22 liver carcinoma C57BL/6 mouse models, significantly different telomere lengths among different DNA samples were not observed in wild-type mice. However, the relative telomere lengths of the tumor DNA in the two strains of tumor-bearing mice were significantly shorter than the lengths in the surrounding non-tumor DNA of tumor-bearing mice and the tissue DNA of wild-type mice. These results suggest that the shortening of telomere lengths may be regarded as an important indicator for cancer control and prevention. Quantification of telomere lengths was further confirmed by the traditional Southern blotting method. This method could be successfully used to reduce the time needed for rapid, precise measurement of telomere lengths in biological samples.
机译:在本文中,我们描述了用于确定端粒长度的多重减少时间的定量聚合酶链反应(qPCR)方法。这种多重qPCR分析能够使两对引物同时扩增端粒和单拷贝基因(白蛋白)模板,从而与以前建立的单重分析相比,减少了分析时间和工作量。系统优化了主要混合物的化学组成以及端粒和白蛋白的引物。设计热循环程序以确保端粒和白蛋白的熔融过程完全分离。建立了DNA浓度对循环阈值(C sub )的半对数标准曲线,在81倍的DNA浓度范围内具有线性关系。表现出良好的测定内(RSD范围2.4–4.7%)和测定间(RSD范围:3.1–5.0%)可重复性,以确保测量的稳定性。使用野生型,Lewis肺癌和H22肝癌C57BL / 6小鼠模型,在野生型小鼠中未观察到不同DNA样品之间的端粒长度显着不同。然而,这两种荷瘤小鼠品系中肿瘤DNA的相对端粒长度显着短于荷瘤小鼠周围非肿瘤DNA和野生型小鼠组织DNA中的相对端粒长度。这些结果表明,端粒长度的缩短可能被认为是癌症控制和预防的重要指标。端粒长度的定量通过传统的Southern印迹法进一步证实。该方法可以成功地减少快速,精确地测量生物样品中端粒长度所需的时间。

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