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Coupling Molecular Beacons to Barcoded Metal Nanowires for Multiplexed Sealed Chamber DNA Bioassays

机译:分子信标与条形码金属纳米线的偶联用于多重密封腔室DNA生物测定

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摘要

We have combined molecular beacon (MB) probes with barcoded metal nanowires to enable no-wash, sealed chamber, multiplexed detection of nucleic acids. Probe design and experimental parameters important in nanowire-based MB assays are discussed. Loop regions of 24 bases and 5 base pair stem regions in the beacon probes gave optimal performance. Our results suggest that thermodynamic predictions for secondary structure stability of solution-phase MB can guide probe design for nanowire-based assays. Dengue virus-specific probes with predicted solution-phase ΔG of folding in 500 mM buffered NaCl of approximately −4 kcal/mol performed better than those with ΔG > −2 or < −6 kcal/mol. Buffered 300–500 mM NaCl was selected after comparison of several buffers previously reported for similar types of assays, and 200–500 mM NaCl was found to be the optimal ionic strength for the hybridization temperatures (25 and 50 °C) and probe designs used here. Target binding to the surface as a function of solution concentration fit a Sips isotherm with Kd = 1.7 ± 0.3 nM. The detection limit was ∼100 pM, limited by incomplete quenching. Single base mismatches could be discriminated from fully complementary targets. Oligonucleotide target sequences specific for human immunodeficiency, hepatitis C, and severe acute respiratory viruses were assayed simultaneously in a no-wash, sealed chamber, multiplexed experiment in which each of three probe sequences was attached to a different pattern of encoded nanowires. Finally, we demonstrated that probe-coated nanowires retain their selectivity and sensitivity in a triplexed assay after storage for over 3 months.
机译:我们将分子信标(MB)探针与带条形码的金属纳米线相结合,以实现免清洗,密闭室,核酸的多重检测。讨论了基于纳米线的MB分析中重要的探针设计和实验参数。信标探针中的24个碱基和5个碱基对的茎区域的环区提供了最佳性能。我们的结果表明,溶液相MB的二级结构稳定性的热力学预测可以指导基于纳米线测定的探针设计。在500 mM缓冲NaCl中具有约-4 kcal / mol的预测溶液相折叠ΔG的登革热病毒特异性探针,其性能优于ΔG> -2或<-6 kcal / mol的探针。在比较了先前报道的用于类似类型测定的几种缓冲液后,选择了300–500 mM NaCl缓冲液,发现200–500 mM NaCl是杂交温度(25和50°C)和所用探针设计的最佳离子强度这里。靶标与表面的结合作为溶液浓度的函数,与Sips等温线吻合,Kd = 1.7±0.3 nM。检测极限为〜100 pM,受不完全淬灭的限制。单碱基不匹配可与完全互补的靶标区分开。在免洗,密闭室,多重实验中同时测定了对人类免疫缺陷病毒,丙型肝炎病毒和严重的急性呼吸道病毒具有特异性的寡核苷酸靶序列,其中三个探针序列中的每一个均连接至不同模式的编码纳米线。最后,我们证明了在超过3个月的储存时间后,探针包覆的纳米线在三重检测中保留了其选择性和敏感性。

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