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Superiorities of time-correlated single-photon counting against standard fluorimetry in exploiting the potential of fluorochromized oligonucleotide probes for biomedical investigation

机译:与时间相关的单光子计数相对于标准荧光法的优越性,可利用荧光染色的寡核苷酸探针在生物医学研究中的潜力

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Site-specific fluorescence-resonance-energy-transfer donor-acceptor dual-labelled oligonucleotide probes are widely used in state-of-art biotechnological applications. Such applications include their usage as primers in polymerase chain reaction. However, the steady-state fluorescence intensity signal emitted by these molecular tools strongly depends from the specificities of the probe conformation. For this reason, the information which can be reliably inferred by steady-state fluorimetry performed on such samples is forcedly confined to a semi-qualitative level. Namely, fluorescent emission is frequently used as ON/OFF indicator of the probe hybridization state, i.e. detection of fluorescence signals indicates either hybridization to or detachment from the template DNA of the probe. Nonetheless, a fully quantitative analysis of their fluorescence emission properties would disclose other exciting applications of dual-labelled probes in biosensing. Here we show how time-correlated single-photon counting can be applied to get rid of the technical limitations and interpretational ambiguities plaguing the intensity analysis, and to derive information on the template DNA reaching single-base.
机译:特定于位点的荧光共振能量转移供体受体双标记寡核苷酸探针广泛用于最新的生物技术应用中。此类应用包括将其用作聚合酶链反应中的引物。但是,这些分子工具发出的稳态荧光强度信号很大程度上取决于探针构象的特异性。因此,通过对这样的样品进行的稳态荧光测定能够可靠地推断出的信息被强制性地限制在半定性的水平。即,荧光发射经常用作探针杂交状态的ON / OFF指示剂,即荧光信号的检测表明与探针的模板DNA杂交或脱离。尽管如此,对其荧光发射特性的完全定量分析将揭示双标记探针在生物传感中的其他令人兴奋的应用。在这里,我们展示了如何使用时间相关的单光子计数来摆脱强度分析困扰的技术局限性和解释性歧义,并获得到达单碱基的模板DNA的信息。

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