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Quantum Dot Layer-by-Layer Assemblies as Signal Amplification Labels for Ultrasensitive Electronic Detection of Uropathogens

机译:量子点逐层组装作为信号放大标签,用于致病菌的超灵敏电子检测

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摘要

The preparation and use of a new class of signal amplification label, quantum dot (QD) layer-by-layer (LBL) assembled polystyrene microsphere composite, for amplified ultrasensitive electronic detection of uropathogen-specific DNA sequences is described. The target DNA is sandwiched between the capture probes immobilized on the magnetic beads and the signaling probes conjugated to the QD LBL assembled polystyrene beads. Because of the dramatic signal amplification by the numerous QDs involved in each single DNA binding event, subfemtomolar level detection of uropathogen-specific DNA sequences is achieved, which makes our strategy among the most sensitive electronic approach for nucleic acid-based monitoring of pathogens. Our signal amplified detection scheme could be readily expanded to monitor other important biomolecules (e.g., proteins, peptides, amino acids, cells, etc.) in ultralow levels and thus holds great potential for early diagnosis of disease biomarkers.
机译:描述了一种新型的信号放大标签,量子点(QD)逐层(LBL)组装的聚苯乙烯微球复合材料的制备和使用,用于对尿路致病菌特异性DNA序列进行超灵敏的电子检测。将目标DNA夹在固定在磁珠上的捕获探针和与QD LBL组装的聚苯乙烯珠偶联的信号探针之间。由于每个单个DNA结合事件中涉及的大量QD都对信号进行了戏剧性的放大,因此实现了尿毒症特异性DNA序列的亚飞摩尔水平检测,这使我们的策略成为基于核酸的病原体监测的最灵敏电子方法之一。我们的信号放大检测方案可以很容易地扩展到以超低水平监测其他重要的生物分子(例如蛋白质,肽,氨基酸,细胞等),因此具有早期诊断疾病生物标志物的潜力。

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