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High-permeability functionalized silicone magnetic microspheres with low autofluorescence for biomedical applications

机译:具有低自发荧光的高渗透性功能化有机硅磁性微球用于生物医学应用

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摘要

Functionalized magnetic microspheres are widely used for cell separations, isolation of proteins and other biomolecules, in vitro diagnostics, tissue engineering, and microscale force spectroscopy. We present here the synthesis and characterization of a silicone magnetic microsphere which can be produced in diameters ranging from 0.5 to 50 μm via emulsion polymerization of a silicone ferrofluid precursor. This bottom-up approach to synthesis ensures a uniform magnetic concentration across all sizes, leading to significant advances in magnetic force generation. We demonstrate that in a size range of 5–20 μm, these spheres supply a full order of magnitude greater magnetic force than leading commercial products. In addition, the unique silicone matrix exhibits autofluorescence two orders of magnitude lower than polystyrene microspheres. Finally, we demonstrate the ability to chemically functionalize our silicone microspheres using a standard EDC reaction, and show that our folate-functionalized silicone microspheres specifically bind to targeted HeLa and Jurkat cells.These spheres show tremendous potential for replacing magnetic polystyrene spheres in applications which require either large magnetic forces or minimal autofluorescence, since they represent order-of-magnitude improvements in each. In addition, the unique silicone matrix and proven biocompatibility suggest that they may be useful for encapsulation and targeted delivery of lipophilic pharmaceuticals.
机译:功能化的磁性微球被广泛用于细胞分离,蛋白质和其他生物分子的分离,体外诊断,组织工程和微型力谱。我们在这里介绍了有机硅磁性微球的合成和表征,该有机硅磁性微球可以通过有机硅铁磁流体前驱体的乳液聚合而生产,直径范围为0.5至50μm。这种自下而上的合成方法可确保所有尺寸的磁场均一,从而显着提高了磁力的产生。我们证明,在尺寸范围为5–20μm的情况下,这些球提供的磁力要比领先的商业产品大整整一个数量级。此外,独特的有机硅基质的自发荧光性比聚苯乙烯微球低两个数量级。最后,我们展示了使用标准EDC反应对有机硅微球进行化学功能化的能力,并表明我们叶酸官能化的有机硅微球可与目标HeLa和Jurkat细胞特异性结合,这些球体在需要替代应用的磁性聚苯乙烯球体方面显示出巨大的潜力大磁力或最小的自发荧光,因为它们各自代表了数量级的提高。此外,独特的有机硅基质和成熟的生物相容性表明,它们可用于亲脂性药物的封装和靶向递送。

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