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首页> 外文期刊>International Journal of Nanomedicine >Facile one-step coating approach to magnetic submicron particles with poly(ethylene glycol) coats and abundant accessible carboxyl groups
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Facile one-step coating approach to magnetic submicron particles with poly(ethylene glycol) coats and abundant accessible carboxyl groups

机译:利用聚(乙二醇)涂层和丰富的可利用羧基对磁性亚微米颗粒进行简便的一步涂覆方法

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Purpose: Magnetic submicron particles (MSPs) are pivotal biomaterials for magnetic separations in bioanalyses, but their preparation remains a technical challenge. In this report, a facile one-step coating approach to MSPs suitable for magnetic separations was investigated.Methods: Poly(ethylene glycol) (PEG) was derived into PEG-bis-(maleic monoester) and maleic monoester-PEG-succinic monoester as the monomers. Magnetofluids were prepared via chemical co-precipitation and dispersion with the monomers. MSPs were prepared via one-step coating of magnetofluids in a water-in-oil microemulsion system of aerosol-OT and heptane by radical co-polymerization of such monomers.Results: The resulting MSPs contained abundant carboxyl groups, exhibited negligible nonspecific adsorption of common substances and excellent suspension stability, appeared as irregular particles by electronic microscopy, and had submicron sizes of broad distribution by laser scattering. Saturation magnetizations and average particle sizes were affected mainly by the quantities of monomers used for coating magnetofluids, and steric hindrance around carboxyl groups was alleviated by the use of longer monomers of one polymerizable bond for coating. After optimizations, MSPs bearing saturation magnetizations over 46 emu/g, average sizes of 0.32 μm, and titrated carboxyl groups of about 0.21 mmol/g were obtained. After the activation of carboxyl groups on MSPs into N-hydroxysuccinimide ester, biotin was immobilized on MSPs and the resulting biotin-functionalized MSPs isolated the conjugate of streptavidin and alkaline phosphatase at about 2.1 mg/g MSPs; streptavidin was immobilized at about 10 mg/g MSPs and retained 81% ± 18% (n = 5) of the specific activity of the free form.Conclusion: The facile approach effectively prepares MSPs for magnetic separations.
机译:目的:磁性亚微米颗粒(MSP)是用于生物分析中磁性分离的关键生物材料,但其制备仍然是一项技术挑战。在本报告中,研究了一种适用于磁分离的MSP的简便一步包衣方法。方法:将聚乙二醇(PEG)衍生为PEG-双-(马来酸单酯)和马来酸单酯-PEG-琥珀酸单酯。单体。磁流体是通过化学共沉淀和与单体的分散制备的。通过在单体气雾剂-OT和庚烷中的油包水微乳液体系中磁流体的一步涂覆,通过这些单体的自由基共聚制备了MSP。结果:生成的MSP含有丰富的羧基,对普通分子的非特异性吸附可忽略不计物质和优异的悬浮稳定性,在电子显微镜下显示为不规则颗粒,并且通过激光散射具有宽分布的亚微米尺寸。饱和磁化强度和平均粒径主要受用于涂覆磁流体的单体数量的影响,并且通过使用一个可聚合键的较长单体进行涂覆,可减轻羧基周围的空间位阻。经过优化后,获得的MSP的饱和磁化强度超过46 emu / g,平均大小为0.32μm,滴定的羧基约为0.21 mmol / g。将MSP上的羧基活化为N-羟基琥珀酰亚胺酯后,将生物素固定在MSP上,然后将生物素官能化的MSP分离出链霉亲和素和碱性磷酸酶的结合物,浓度约为2.1 mg / g MSP。链霉亲和素被固定在约10 mg / g MSP的位置,并保留了游离形式比活性的81%±18%(n = 5)。结论:简便的方法有效地制备了MSPs进行磁分离。

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