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Highly sensitive detection of protein biomarkers via nuclear magnetic resonance biosensor with magnetically engineered nanoferrite particles

机译:通过具有磁性工程纳米铁氧体颗粒的核磁共振生物传感器对蛋白质生物标志物的高灵敏度检测

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摘要

Magnetic-based biosensors are attractive for on-site detection of biomarkers due to the low magnetic susceptibility of biological samples. Here, we report a highly sensitive magnetic-based biosensing system that is composed of a miniaturized nuclear magnetic resonance (NMR) device and magnetically engineered nanoferrite particles (NFPs). The sensing performance, also identified as the transverse relaxation (R2) rate, of the NMR device is directly related to the magnetic properties of the NFPs. Therefore, we developed magnetically engineered NFPs (MnMg-NFP) and used them as NMR agents to exhibit a significantly improved R2 rate. The magnetization of the MnMg-NFPs was increased by controlling the Mn and Mg cation concentration and distribution during the synthesis process. This modification of the Mn and Mg cation directly contributed to improving the R2 rate. The miniaturized NMR system, combined with the magnetically engineered MnMg-NFPs, successfully detected a small amount of infectious influenza A H1N1 nucleoprotein with high sensitivity and stability.
机译:由于生物样品的磁化率低,基于磁性的生物传感器对于生物标志物的现场检测具有吸引力。在这里,我们报告了一个高度敏感的基于磁性的生物传感系统,该系统由小型核磁共振(NMR)装置和磁性工程纳米铁氧体颗粒(NFP)组成。 NMR设备的传感性能(也称为横向弛豫(R2)速率)与NFP的磁性能直接相关。因此,我们开发了磁性工程NFP(MnMg-NFP),并将其用作NMR试剂,以显示R2速率显着提高。通过控制合成过程中Mn和Mg阳离子的浓度和分布,可以增加MnMg-NFP的磁化强度。 Mn和Mg阳离子的这种修饰直接有助于提高R2速率。微型NMR系统与磁化的MnMg-NFP结合,成功地检测了少量具有高灵敏度和稳定性的传染性A H1N1流感病毒核蛋白。

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