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Graphite-coated magnetic nanoparticle microarray for few-cells enrichment and detection

机译:涂有石墨的磁性纳米颗粒微阵列用于少量细胞富集和检测

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摘要

Graphite-coated, highly magnetic FeCo core-shell nanoparticles were synthesized by a chemical vapor deposition method and solubilized in aqueous solution through a unique polymer mixture modification, which significantly improved the biocompatibility and stability of the magnetic nanoparticles (MNPs). Such functionalized MNPs were proven to be very stable in different conditions which would be significant for biological applications. Cell staining, manipulation, enrichment, and detection were developed with these MNPs. Under external magnetic manipulation, the MNP-stained cells exhibited directed motions. Moreover, MNPs were printed on substrates to modulate the magnetic field distribution on the surface. Capture and detection of sparse populations of cancer cells spiked into whole blood has been explored in a microarray fashion. Cancer cells from hundreds down to only two were able to be simply and efficiently detected from 1 mL of whole blood on the MNP microarray chips. Interestingly, the cells captured through the MNP microarray still showed viability and adhered to the MNP spots after incubation, which could be utilized for cancer cell detection, localized growth, and proliferation.
机译:通过化学气相沉积法合成了石墨包覆的高磁性FeCo核壳纳米粒子,并通过独特的聚合物混合物改性将其溶于水溶液中,从而显着提高了磁性纳米粒子(MNP)的生物相容性和稳定性。事实证明,这种功能化的MNP在不同条件下非常稳定,这对于生物学应用而言将是重要的。这些MNP可以进行细胞染色,操作,富集和检测。在外部磁力操纵下,MNP染色的细胞表现出定向运动。此外,将MNP印刷在基板上以调节表面上的磁场分布。已经以微阵列方式探索了捕获和检测掺入全血的稀疏癌细胞群体的方法。从MNP微阵列芯片上的1毫升全血中,可以简单而有效地检测出数百个甚至只有两个的癌细胞。有趣的是,通过MNP微阵列捕获的细胞在孵育后仍显示活力并粘附在MNP点上,可用于癌细胞检测,局部生长和增殖。

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