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利用磁离子探测和诱导焦磷酸盐、细菌和哺乳动物细胞的磁性。

Using Magnetic Ions to Probe and Induce Magnetism of Pyrophosphates, Bacteria, and Mammalian Cells.

机构信息

Department of Applied Chemistry , National Chiao Tung University , Hsinchu 300 , Taiwan.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 12;10(36):30837-30843. doi: 10.1021/acsami.8b09100. Epub 2018 Aug 28.

Abstract

Magnetic isolation using magnetic nanoparticles (MNPs) as trapping probes have been widely used in sample pretreatment to shorten analysis time. Nevertheless, to generate MNPs is time-consuming. Furthermore, the generated MNPs have to be further functionalized to gain the capability of recognizing their target species. Thus, an alternative approach that can impose magnetism to nonmagnetic species by simply using magnetic ions as the probes is developed in this study. That is, we employ magnetic ions (Fe, Co, and Ni) that can interact with nonmagnetic species containing oxygen-containing functional groups as the probes. Pyrophosphate (PPi), bacteria, and mammalian cells were selected as the model samples. Our results show that the as-prepared magnetic ion-PPi conjugates gain sufficient magnetism and can be readily aggregated by applying an external magnetic field. Moreover, the magnetic trapping is reversible. The PPi-containing conjugates can lose their magnetic property simply using ethylenediaminetetraacetic acid or aluminum ions as competing agents to remove or to replace, respectively, the conjugated magnetic ions. In addition, bacteria and mammalian cells that possess abundant oxygen-containing functional groups on their cell surfaces can be selectively probed by magnetic ions and gain sufficient magnetism for magnetic isolation from complex serum samples.

摘要

使用磁性纳米粒子 (MNPs) 作为捕获探针进行磁性隔离已广泛应用于样品预处理,以缩短分析时间。然而,生成 MNPs 是耗时的。此外,生成的 MNPs 必须进一步功能化以获得识别其目标物种的能力。因此,本研究开发了一种替代方法,即通过简单地使用磁性离子作为探针来向非磁性物质施加磁性。也就是说,我们使用可以与含有含氧官能团的非磁性物质相互作用的磁性离子(Fe、Co 和 Ni)作为探针。焦磷酸盐 (PPi)、细菌和哺乳动物细胞被选为模型样品。我们的结果表明,所制备的磁性离子-PPi 缀合物获得了足够的磁性,并可以通过施加外部磁场轻易地聚集。此外,磁性捕获是可逆的。含有 PPi 的缀合物可以通过使用乙二胺四乙酸或铝离子作为竞争性试剂来分别去除或取代共轭磁性离子而失去其磁性。此外,表面含有丰富含氧官能团的细菌和哺乳动物细胞可以通过磁性离子进行选择性探测,并从复杂的血清样本中获得足够的磁性用于磁性分离。

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