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Magnetic Clustering Effect during the Association of Biofunctionalized Magnetic Nanoparticles with Biomarkers

机译:生物功能化的磁性纳米粒子与生物标志物的关联过​​程中的磁簇效应。

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摘要

We report herein an investigation into dynamic magnetic clustering that occurs during immunoassays as biofunctionalized magnetic nanoparticles (BMNs) become associated with biotargets. We measure the dynamic effective relaxation time τ eff(t) and use scanning electron microscopy (SEM) and transmission electron microscopy (TEM) to investigate the C-reactive protein (CRP) as it associates with the BMN Fe3O4-antiCRP to form the magnetic cluster Fe3O4-antiCRP-CRP. The results indicate that τ eff(t) increases with increasing association time. In addition, the ration Δτ eff/τ 0 as a function of CRP concentration follows a characteristic logistic function, which provides a basis for estimating the quantity of biomolecules with a detection sensitivity close to 0.1 ppm. After the association, SEM and TEM images show that CRP and Fe3O4-antiCRP conjugate to form Fe3O4-antiCRP-CRP clusters hundreds of nanometers in size. The SEM and TEM images provide direct evidence of the formation of magnetic clustering.
机译:我们在此报告了对动态磁簇的调查,该动态磁簇在免疫测定过程中发生,因为生物功能化的磁性纳米颗粒(BMN)与生物靶标相关。我们测量动态有效弛豫时间τeff(t),并使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究C反应蛋白(CRP),因为它与BMN Fe3O4-antiCRP结合形成磁性簇Fe3O4-antiCRP-CRP。结果表明,τeff(t)随着关联时间的增加而增加。另外,作为CRP浓度的函数的比率Δτeff /τ0遵循特征对数函数,这为估计检测灵敏度接近0.1 ppm的生物分子的量提供了基础。缔合后,SEM和TEM图像显示CRP和Fe3O4-antiCRP-共轭物形成Fe3O4-antiCRP-CRP成簇数百纳米。 SEM和TEM图像提供了磁簇形成的直接证据。

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