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Preparation of phenyl-functionalized magnetic mesoporous silica microspheres for the fast separation and selective enrichment of phenyl-containing peptides

机译:用于快速分离和富集含苯基肽的苯基官能化磁性介孔二氧化硅微球的制备

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摘要

Peptide enrichment before mass spectrometry analysis is essential for large-scale peptidomic studies, but challenges still remain. Herein, magnetic mesoporous silica microspheres with phenyl group modified interior pore walls were prepared by a facile sol-gel coating strategy, and were successfully applied for selective enrichment of phenyl-containing peptides in complex biological samples. The newly prepared nanomaterials possessed abundant silanol groups in the exterior surface and numerous phenyl groups in the interior pore walls, as well as a large surface area (592.6 m(2)/g), large pore volume (0.33 cm(3)/g), uniform mesopores (3.8 nm), strong magnetic response (29.3 emu/g), and good dispersibility in aqueous solution. As a result of the unique structural properties and size-exclusion effect, the core-shell phenyl-functionalized magnetic mesoporous silica microspheres exhibited excellent performance in fast separation and selective enrichment of phenyl-containing peptides, and the adsorption capacity for bradykinin reached 22.55 mg/g. In addition, selective enrichment of phenyl-containing peptides from complex samples that are consist of peptides, large proteins, and human serum were achieved by using the as-prepared microspheres, followed by high-performance liquid chromatography with ultraviolet detection and electrospray ionization quadrupole time-of-flight mass spectrometry analysis. These results demonstrated the as-prepared microspheres would be a potential candidate for endogenous phenyl-containing peptides enrichment and biomarkers discovery in peptidome analysis.
机译:质谱分析之前的肽富集对于大规模肽组学研究至关重要,但仍然存在挑战。在此,通过简便的溶胶-凝胶涂覆策略制备了具有苯基基团修饰的内孔壁的磁性介孔二氧化硅微球,并将其成功地用于选择性富集复杂生物样品中的含苯基肽。新制备的纳米材料在外表面具有丰富的硅烷醇基团,在内部孔壁中具有大量的苯基基团,以及较大的表面积(592.6 m(2)/ g),较大的孔体积(0.33 cm(3)/ g) ),均匀的中孔(3.8 nm),强磁响应(29.3 emu / g)和在水溶液中的良好分散性。由于独特的结构特性和尺寸排阻作用,核-壳苯基官能化的磁性介孔二氧化硅微球在快速分离和选择性富集含苯基肽方面表现出优异的性能,缓激肽的吸附容量达到22.55 mg / G。此外,通过使用制备的微球,然后通过具有紫外检测和电喷雾电离四极杆时间的高效液相色谱,可以从由肽,大蛋白和人血清组成的复杂样品中选择性富集含苯基的肽飞行质谱分析。这些结果证明,所制备的微球将是肽组分析中内源性含苯基肽富集和生物标记物发现的潜在候选者。

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