Shanghai Key Laboratory of Functional Materials Chemistry, School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai, 200237, People's Republic of China.
Nanoscale. 2017 Nov 9;9(43):16764-16772. doi: 10.1039/c7nr05330d.
In this work, we fabricated a yolk-shell magnetic composite that contains mesoporous TiO as the inner shell and flowerlike NiO as the outer shell (denoted as FeO@H-TiO@f-NiO) to reduce the limitations of single-component metal oxides in phosphopeptide enrichment. The NiO nanosheets play a synergistic role in phosphopeptide enrichment. And the unique flowerlike structure of NiO with sufficient space can facilitate the reversible insertion/extraction of peptides, which will have less impact on the enrichment process of the inner TiO shell. The yolk-shell structure and two types of porous nanostructures endowed this composite with a high surface area (156.58 m g) and a large pore volume (0.37 cm g). Owing to the high surface area and combined properties of TiO and NiO, the FeO@H-TiO@f-NiO microspheres showed a better performance for phosphopeptide enrichment than the same material without NiO nanosheets (FeO@H-TiO). According to the LC-MS/MS results, 972 unique phosphopeptides were identified from HeLa cell extracts with a high selectivity (91.9%) by FeO@H-TiO@f-NiO relative to 837 phosphopeptides (selectivity: 60.2%) by FeO@H-TiO. The results demonstrated that, compared with single-component metal oxides, composite metal oxides could enhance the selectivity and sensitivity for phosphopeptide enrichment.
在这项工作中,我们制备了一种蛋黄壳磁性复合材料,其中包含介孔 TiO2 作为内壳和花状 NiO 作为外壳(表示为 FeO@H-TiO@f-NiO),以减少单一金属氧化物在磷酸肽富集中的局限性。NiO 纳米片在磷酸肽富集中发挥协同作用。并且 NiO 的独特花状结构具有足够的空间,可以促进肽的可逆插入/提取,这对 TiO 壳的富集过程的影响较小。蛋黄壳结构和两种类型的多孔纳米结构使这种复合材料具有高表面积(156.58 m²/g)和大孔体积(0.37 cm³/g)。由于高表面积和 TiO 和 NiO 的综合性质,FeO@H-TiO@f-NiO 微球在磷酸肽富集方面的性能优于没有 NiO 纳米片的相同材料(FeO@H-TiO)。根据 LC-MS/MS 结果,与 FeO@H-TiO 相比,FeO@H-TiO@f-NiO 对 HeLa 细胞提取物的高选择性(91.9%)可鉴定出 972 种独特的磷酸肽(选择性:60.2%)。结果表明,与单一金属氧化物相比,复合金属氧化物可以提高磷酸肽富集的选择性和灵敏度。