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Investigation of a fluorescence signal amplification mechanism used for the direct molecular detection of nucleic acids

机译:用于核酸直接分子检测的荧光信号放大机制的研究

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摘要

A fluorescence signal amplification mechanism allowing detection limits for DNA in the zeptomolar range was investigated. Photophysical properties of the molecular system were studied in order to better explain the signal amplification that is observed. We show that the confinement of a fluorescent DNA hybridization transducer in aggregates improves its quantum yield and photostability. Furthermore, we show that the combination of the resonance energy transfer occurring within the aggregates with the use of a conjugated polymer as the hybridization transducer and donor allows ultrafast and efficient energy coupling to the aggregates and can lead to the excitation of a large number of acceptors by only one donor.
机译:研究了允许在Zeptomolar范围内检测DNA极限的荧光信号放大机制。为了更好地解释观察到的信号放大,研究了分子系统的光物理性质。我们表明,在聚集体中荧光DNA杂交换能器的限制提高了其量子产率和光稳定性。此外,我们表明,在聚集体中发生的共振能量转移与使用共轭聚合物作为杂交换能器和供体的结合允许超快而有效的能量耦合到聚集体,并可以导致大量受体的激发只有一位捐助者。

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