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High-performance real-time quantitative RT-PCR using lanthanide probes and a dual-temperature hybridization assay

机译:使用镧系元素探针和双温度杂交测定的高性能实时定量RT-PCR

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We report a time-resolved fluorescence-based, homogeneous approach for multiplex, real-time or end-point detection of PCR products. Signal generation consists of PCR associated digestion of a 5'-labeled oligonucleotide probe, rapid cooling of the reaction mixture, and hybridization of undigested probe oligonucleotides with a complementary, shorter probe that incorporates a quencher at its 3' end. The signal coming from intact fluorescent probe molecules is, thus, quenched. The fluorophores we have used are environmentally sensitive lanthanide chelates. Their signals can be measured in a time-resolved manner that eliminates most of the unspecific fluorescent background. Signal-to-noise ratios are further enhanced by the environmental sensitivity of these chelates; they exhibit a higher fluorescence intensity when free in solution than when coupled to intact probe molecules. Because of the minimal background fluorescence, the signal-to-noise ratios are higher and threshold cycles are lower than those obtained using conventional TaqMan probes. The multi-plexing capacity of the assay chemistry is demonstrated through simultaneous amplification and detection of prostate specific antigen (PSA) cDNA and an internal standard mRNA (mmPSA) using probes labeled with terbium and europium. The applicability of the assay chemistry to routine clinical diagnostics is demonstrated through absolute quantification of PSA mRNA in peripheral blood. [References: 28]
机译:我们报告了一种基于时间分辨的基于荧光的均质方法,用于PCR产品的多重,实时或终点检测。信号产生包括5'标记的寡核苷酸探针的PCR相关消化,反应混合物的快速冷却以及未消化的探针寡核苷酸与互补的较短探针的杂交,该探针在其3'末端加入了淬灭剂。因此,来自完整荧光探针分子的信号被猝灭。我们使用的荧光团是对环境敏感的镧系元素螯合物。可以以时间分辨的方式测量其信号,从而消除了大多数非特异性荧光背景。这些螯合物的环境敏感性进一步提高了信噪比。当与溶液中的探针分子偶联时,它们在溶液中游离时表现出更高的荧光强度。由于背景荧光极小,因此与使用常规TaqMan探针获得的信噪比相比,其信噪比更高且阈值周期更低。通过使用amplification和and标记的探针同时扩增和检测前列腺特异性抗原(PSA)cDNA和内标mRNA(mmPSA),可以证明分析化学的多重能力。通过对外周血中PSA mRNA的绝对定量,证明了测定化学方法对常规临床诊断的适用性。 [参考:28]

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