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Magnetic Nanospheres Encapsulated by Mesoporous Copper Oxide Shell for Selective Isolation of Hemoglobin

机译:介孔氧化铜壳包裹的磁性纳米球用于血红蛋白的选择性分离

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摘要

A novel strategy for the preparation of magnetic nanospheres encapsulated by mesoporous copper oxide shell, shortly termed as Fe3O4@mCuO, is reported via the calcination of Cu(NH3)(4)(NO3)(2) into continuous mesoporous CuO shell onto the surface of Fe3O4 nanoparticles. The magnetic nanospheres are characterized to possess stable core shell structure with a crystalline mesoporous CuO layer, exhibiting a CuO loading content of 25.2 +/- 1.1% along with a favorable magnetic susceptibility. Fe3O4@mCuO nanospheres exhibit favorable selectivity on the adsorption of hemoglobin with a high adsorption capacity of up to 1162.5 mg g(-1). After adsorption, the high magnetic susceptibility allows convenient separation of the nanospheres by an external magnet, The retained hemoglobin could be readily recovered by using 0.5% (m/v) sodium dodecyl sulfate (SDS) as stripping reagent, providing a recovery of 78%. Circular dichroism spectra illustrate virtually no change in the conformation of hemoglobin after the process of adsorption/desorption. Fe3O4@mCuO nanospheres are further applied for the selective isolation of hemoglobin from human whole blood, achieving high-purity hemoglobin as demonstrated by SDS-PAGE (polyacrylamide gel electrophoresis) assays.
机译:通过将Cu(NH3)(4)(NO3)(2)煅烧成连续的介孔CuO壳,将介孔氧化铜壳包裹的磁性纳米球的新制备方法(简称为Fe3O4 @ mCuO)被报道。 Fe3O4纳米颗粒。磁性纳米球的特征在于具有稳定的核壳结构和结晶中孔CuO层,其CuO负载量为25.2 +/- 1.1%,并具有良好的磁化率。 Fe3O4 @ mCuO纳米球对血红蛋白的吸附具有良好的选择性,具有高达1162.5 mg g(-1)的高吸附能力。吸附后,高磁化率可通过外部磁体方便地分离纳米球。使用0.5%(m / v)十二烷基硫酸钠(SDS)作为汽提剂可轻松回收残留的血红蛋白,回收率达78% 。圆二色性光谱表明,吸附/解吸过程后血红蛋白的构型几乎没有变化。 Fe3O4 @ mCuO纳米球被进一步用于从人全血中选择性分离血红蛋白,从而实现高纯度的血红蛋白,如SDS-PAGE(聚丙烯酰胺凝胶电泳)分析所示。

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