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首页> 外文期刊>Journal of biomedicine & biotechnology >Detection of Target ssDNA Using a Microfabdicated Hall Magnetometer with Correlated Optical Readout
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Detection of Target ssDNA Using a Microfabdicated Hall Magnetometer with Correlated Optical Readout

机译:使用具有相关光学读数的超微型霍尔磁强计检测目标ssDNA

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摘要

Sensing biological agents at the genomic level, while enhancing the response time for biodetection over commonly used, optics-based techniques such as nucleic acid microarrays or enzyme-linked immunosorbent assays (ELISAs), is an important criterion for new biosensors. Here, we describe the successful detection of a 35-base, single-strand nucleic acid target by Hall-based magnetic transduction as a mimic for pathogenic DNA target detection. The detection platform has low background, large signal amplification following target binding and can discriminate a single, 350 nm superparamagnetic bead labeled with DNA. Detection of the target sequence was demonstrated at 364 pM (<2 target DNA strands per bead) target DNA in the presence of 36 muM nontarget (noncomplementary) DNA (<10 ppm target DNA) using optical microscopy detection on a GaAs Hall mimic. The use of Hall magnetometers as magnetic transduction biosensors holds promise for multiplexing applications that can greatly improve point-of-care (POC) diagnostics and subsequent medical care.
机译:在基因组水平上感测生物制剂,同时比通常使用的基于光学的技术(例如核酸微阵列或酶联免疫吸附测定(ELISA))提高了生物检测的响应时间,是新生物传感器的重要标准。在这里,我们描述了通过基于霍尔的磁转导作为病原体DNA目标检测的模拟物成功检测到35个碱基的单链核酸目标。该检测平台具有低背景,目标结合后信号放大大的特点,并且可以区分单个DNA标记的350 nm超顺磁珠。使用GaAs Hall模拟物上的光学显微镜检测,在36μM非靶标(非互补)DNA(<10 ppm靶标DNA)存在下,在364 pM(每珠小于2条靶标DNA链)的靶标DNA上检测到靶标序列。霍尔磁强计作为磁转导生物传感器的应用为多路复用应用提供了希望,该应用可以大大改善即时诊断(POC)诊断和后续医疗保健。

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