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A molecular beacon, bead-based assay for the detection of nucleic acids by flow cytometry

机译:一种基于分子信标,基于珠的测定法,用于通过流式细胞仪检测核酸

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Molecular beacons are dual-labelled probes that are typically used in real-time PCR assays, but have also been conjugated with solid matrices for use in microarrays or biosensors. We have developed a fluid array system using microsphere-conjugated molecular beacons and the flow cytometer for the specific, multiplexed detection of unlabelled nucleic acids in solution. For this array system, molecular beacons were conjugated with microspheres using a biotin-streptavidin linkage. A bridged conjugation method using streptavidin increased the signal-to-noise ratio, allowing for further discrimination of target quantitation. Using beads of different sizes and molecular beacons in two fluorophore colours, synthetic nucleic acid control sequences were specifically detected for three respiratory pathogens, including the SARS coronavirus in proof-of-concept experiments. Considering that routine flow cytometers are able to detect up to four fluorescent channels, this novel assay may allow for the specific multiplex detection of a nucleic acid panel in a single tube.
机译:分子信标是双标记探针,通常用于实时PCR分析,但也已与固体基质偶联,可用于微阵列或生物传感器。我们已经开发了一种使用微球共轭分子信标和流式细胞仪的流体阵列系统,用于溶液中未标记核酸的特异性,多重检测。对于该阵列系统,使用生物素-链霉亲和素连接将分子信标与微球缀合。使用链霉亲和素的桥接偶联方法提高了信噪比,从而可以进一步区分目标定量。在概念验证实验中,使用不同大小的珠和两种荧光色的分子信标,可以特异性检测出三种呼吸道病原体(包括SARS冠状病毒)的合成核酸控制序列。考虑到常规流式细胞仪能够检测多达四个荧光通道,因此这种新颖的检测方法可允许在单个试管中对核酸板进行特异性的多重检测。

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