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Magnetic Affinity Microspheres with Meso-/Macroporous Shells for Selective Enrichment and Fast Separation of Phosphorylated Biomolecules

机译:具有介孔/大孔壳的磁性亲和微球,可选择性富集和快速分离磷酸化的生物分子

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摘要

The flowerlike multifunctional affinity microspheres prepared by a facile solvothermal synthesis and subsequent calcination process consist of magnetic cores and hierarchical meso-/macroporous TiO2 shells. The hierarchical porous structure of the flowerlike affinity microspheres is constructed by the macroporous shell from the stacked mesoporous nanopetals which are assembled by small crystallites. The affinity microspheres have a relatively large specific surface area of 50.45 m~2 g~(-1) and superparamagnetism with a saturation magnetization (M_s) value of 30.1 emu g~(-1) We further demonstrate that they can be applied for rapid and effective purification of phosphoproteins, in virtue of their selective affinity, porous structure, and strong magnetism. In addition, the affinity microspheres can also be used for enrichment of phosphopeptides, and the selectivity is greatly improved due to the increase of mass transport and prevention of the possible "shadow effect" resulting from the smaller and deeper pores by taking advantage of the unique porous structure. Overall, this work will be highly beneficial for future applications in the isolation and identification of phosphorylated biomolecules.
机译:通过容易的溶剂热合成和随后的煅烧过程制备的花状多功能亲和力微球由磁芯和分层的介孔/大分子TiO2壳组成。花状亲和力微球的分层多孔结构是由大孔壳由堆叠的中孔纳米花瓣构成的,这些花瓣由小微晶组装而成。亲和力微球的比表面积相对较大,为50.45 m〜2 g〜(-1),超顺磁性,饱和磁化强度(M_s)值为30.1 emu g〜(-1)。我们进一步证明了它们可以用于快速合成。凭借其选择性亲和力,多孔结构和强磁性,可以有效地纯化磷蛋白。此外,亲和性微球也可用于富集磷酸肽,并且由于传质的增加以及通过利用独特的微孔防止了更小和更深的孔而可能产生的“阴影效应”,极大地提高了选择性。多孔结构。总的来说,这项工作对于未来在磷酸化生物分子的分离和鉴定中的应用将是非常有益的。

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