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Preparation of magnetic graphene composites with hierarchical structure for selective capture of phosphopeptides

机译:具有选择性捕获磷酸肽的分级结构的磁性石墨烯复合材料的制备

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摘要

A novel graphene composite affinity material consisting of graphene scaffold, Fe3O4 nanoparticles for actuation and fully covered porous titania nanostructures as affinity coating has been designed and constructed. The obtained magnetic graphene composites have a saturation magnetization (Ms) value of 7.3 emu g-1, a BET specific surface area of 111.8 m2 g-1 and an average pore size of 15.1 nm for the porous affinity coating. The multifunctional graphene composites can realize the selective capture and convenient magnetic separation of target phosphopeptides by taking advantage of the decorated magnetic nanoparticles, highly pure and well crystallized affinity coating, and unique porous structure. Sensitivity and selectivity of the affinity graphene composites were evaluated using digests of standard proteins and complex biosamples as well as by comparison with the widely used TiO2 affinity microspheres. The results show that the affinity graphene composites can realize selective capture and rapid separation of low-abundance phosphopeptides from complex biological samples. Thus, this work will contribute to future applications in the purification and separation of specific biomolecules, in particular, low-abundance phosphopeptide biomarkers.
机译:设计并构建了一种新型石墨烯复合亲和材料,该材料由石墨烯支架,用于驱动的​​Fe3O4纳米颗粒和作为亲和涂层的完全覆盖的多孔二氧化钛纳米结构组成。所得磁性石墨烯复合材料的饱和磁化强度(Ms)值为7.3 emu g -1 ,BET比表面积为111.8 m 2 g -1 <多孔亲和涂层的平均孔径为15.1 nm。多功能石墨烯复合材料可利用修饰的磁性纳米粒子,高纯度和良好结晶的亲和涂层以及独特的多孔结构,实现目标磷酸肽的选择性捕获和便捷的磁分离。使用标准蛋白质和复杂生物样品的消化液以及与广泛使用的TiO2亲和力微球进行比较,评估了亲和力石墨烯复合材料的灵敏度和选择性。结果表明,亲和性石墨烯复合材料可以实现复杂生物样品中低丰度磷酸肽的选择性捕获和快速分离。因此,这项工作将有助于未来在特定生物分子,特别是低丰度磷酸肽生物标记物的纯化和分离中的应用。

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