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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Establishment and implications of a characterization method for magnetic nanoparticle using cell tracking velocimetry and magnetic susceptibility modified solutions
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Establishment and implications of a characterization method for magnetic nanoparticle using cell tracking velocimetry and magnetic susceptibility modified solutions

机译:利用细胞跟踪测速和磁化率修正溶液表征磁性纳米粒子的方法的建立及其意义

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摘要

Magnetic micro and nanoparticles conjugated to affinity labels have become a significant, commercial reagent. It has been demonstrated that the performance of cell separation systems using magnetic labels is a function of the magnitude of the magnetic force that can be generated through labeling. This magnetic force is proportional to the number of magnetic particles bound to the cell, the magnetic energy gradient, and the particle-field interaction parameter. This particle-field interaction parameter, which is the product of the relative volumetric, magnetic susceptibility and the volume of the micro or nanoparticle, is a fundamental parameter which can be used to characterize the magnetic particles. An experimental technique is presented which measures the volumetric magnetic susceptibility of particles through the use of susceptibility modified solutions and an experimental instrument, Cell Tracking Velocimetry, CTV. Experimental studies were conducted on polystyrene microspheres alone and those bound to four different magnetic nanoparticles. The experimentally determined values of the magnetic susceptibility of the polystyrene microspheres are consistent with values found from literature. Consequently, magnetic susceptibility measurements of these polystyrene microspheres bound with the magnetic nanoparticles combined with particle size measurements using commercial dynamic light scattering instrument allowed estimates of the particle-field interaction parameter to be made for four commercial, magnetic nanoparticles. The value found for MACS (TM) beads is close to what is reported from an independent study. The values for MACS (TM) beads and Imag (TM) beads are found to agree with what is observed from experiments. Finally, an experimental demonstration of the impact that differences in this field interaction parameter has on the labeling of human lymphocytes is presented.
机译:与亲和标记物偶联的磁性微粒和纳米颗粒已成为重要的商业试剂。已经证明使用磁性标记的细胞分离系统的性能是可通过标记产生的磁力大小的函数。此磁力与绑定到单元的磁性粒子的数量,磁能梯度和粒子场相互作用参数成正比。该颗粒-场相互作用参数是相对体积,磁化率与微粒或纳米颗粒体积的乘积,是可用于表征磁性颗粒的基本参数。提出了一种实验技术,该技术通过使用磁化率改进的溶液和实验仪器“细胞跟踪测速法”(CTV)测量颗粒的体积磁化率。仅对聚苯乙烯微球以及与四个不同磁性纳米粒子结合的聚苯乙烯微球进行了实验研究。实验确定的聚苯乙烯微球的磁化率值与文献中的值一致。因此,结合有磁性纳米颗粒的这些聚苯乙烯微球的磁化率测量与使用商业动态光散射仪器的粒度测量相结合,可以估算出四种商业磁性纳米颗粒的粒子-场相互作用参数。 MACS(TM)磁珠的发现值接近独立研究报告的值。发现MACS(TM)磁珠和Imag(TM)磁珠的值与从实验中观察到的一致。最后,实验证明了该相互作用参数对人淋巴细胞标记的影响。

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