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Nucleic acid hybridization on an electrically reconfigurable network of gold-coated magnetic nanoparticles enables microRNA detection in blood

机译:在金涂层磁性纳米粒子的电性可重构网络上杂交能够在血液中进行微小瘤

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摘要

There is intense interest in quantifying the levels of microRNA because of its importance as a blood-borne biomarker. The challenge has been to develop methods that can monitor microRNA expression both over broad concentration ranges and in ultralow amounts directly in a patient's blood. Here, we show that, through electric-field-induced reconfiguration of a network of gold-coated magnetic nanoparticles modified by probe DNA (DNA-Au@MNPs), it is possible to create a highly sensitive sensor for direct analysis of nucleic acids in samples as complex as whole blood. The sensor is the first to be able to detect concentrations of microRNA from 10 aM to 1 nM in unprocessed blood samples. It can distinguish small variations in microRNA concentrations in blood samples of mice with growing tumours. The ultrasensitive and direct detection of microRNA using an electrically reconfigurable DNA-Au@MNPs network makes the reported device a promising tool for cancer diagnostics.
机译:由于其作为血流生物标志物的重要性,对MicroRNA水平进行了强烈兴趣。 挑战一直在开发可以在患者血液中监测既广泛浓度范围和超级浓度范围的微小浓度的表达。 这里,我们表明,通过电场诱导通过探针DNA(DNA-AU @ MNP)改性的金涂层磁性纳米颗粒网络的重新配置,可以产生高敏感的传感器,用于直接分析核酸 样品作为全血的复杂。 传感器是首先能够在未加工的血液样本中检测从10 AM至1nm的microRNA浓度。 它可以区分小鼠小鼠血液样本中微小荷兰浓度的小变异,具有生长肿瘤。 MicroRNA使用电力可重构的DNA-Au @ MNPS网络的超敏和直接检测使报告的设备成为癌症诊断的有希望的工具。

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