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Sensitive detection of unlabeled oligonucleotides using a paired surface plasma waves biosensor

机译:使用配对的表面等离子体波生物传感器灵敏地检测未标记的寡核苷酸

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Detection of unlabeled oligonucleotides using surface plasmon resonance (SPR) is difficult because of the oligonucleotides' relatively lower molecular weight compared with proteins. In this paper, we describe a method for detecting unlabeled oligonucleotides at low concentration using a paired surface plasma waves biosensor (PSPWB). The biosensor uses a sensor chip with an immobilized probe to detect a target oligonucleotide via sequence-specific hybridization. PSPWB measures the demodulated amplitude of the heterodyne signal in real time. In the meantime, the ratio of the amplitudes between the detected output signal and reference can reduce the excess noise from the laser intensity fluctuation. Also, the common-path propagation of p and s waves cancels the common phase noise induced by temperature variation. Thus, a high signal-to-noise ratio (SNR) of the heterodyne signal is detected. The sequence specificity of oligonucleotide hybridization ensures that the platform is precisely discriminating between target and non-target oligonucleotides. Under optimized experimental conditions, the detected heterodyne signal increases linearly with the logarithm of the concentration of target oligonucleotide over the range 0.5-500. pM. The detection limit is 0.5. pM in this experiment. In addition, the non-target oligonucleotide at concentrations of 10. pM and 10. nM generated signals only slightly higher than background, indicating the high selectivity and specificity of this method. Different length of perfectly matched oligonucleotide targets at 10-mer, 15-mer and 20-mer were identified at the concentration of 150. pM.
机译:使用表面等离子体共振(SPR)检测未标记的寡核苷酸是困难的,因为与蛋白质相比,寡核苷酸的分子量相对较低。在本文中,我们描述了一种使用配对表面等离子体波生物传感器(PSPWB)检测低浓度未标记寡核苷酸的方法。生物传感器使用带有固定探针的传感器芯片,通过序列特异性杂交检测目标寡核苷酸。 PSPWB实时测量外差信号的解调幅度。同时,检测到的输出信号和参考之间的振幅比可以减少来自激光强度波动的多余噪声。同样,p和s波的公共路径传播消除了温度变化引起的公共相位噪声。因此,检测到外差信号的高信噪比(SNR)。寡核苷酸杂交的序列特异性可确保平台准确区分靶寡核苷酸和非靶寡核苷酸。在优化的实验条件下,检测到的外差信号在0.5-500范围内随目标寡核苷酸浓度的对数线性增加。下午。检出限为0.5。本实验中的pM。此外,浓度为10 pM和10. nM的非靶寡核苷酸产生的信号仅略高于背景,表明该方法具有很高的选择性和特异性。在150. pM的浓度下,鉴定出长度不同的10聚体,15聚体和20聚体的完全匹配的寡核苷酸靶。

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