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Facile Synthesis of Magnetic Mesoporous Hollow Carbon Microspheres for Rapid Capture of Low-Concentration Peptides

机译:磁性中孔空心碳微球的快速合成,用于快速捕获低浓度肽

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摘要

Mesoporous and hollow carbon microspheres embedded with magnetic nanoparticles (denoted as MHM) were prepared via a facile self-sacrificial method for rapid capture of low-abundant peptides from complex biological samples. The morphology, structure, surface property, and magnetism were well-characterized. The hollow magnetic carbon microspheres have a saturation magnetization value of 130.2 emu g~(-1) at room temperature and a Brunauer—Emmett -Teller specific surface area of 48.8 m2 g~(-1) with an average pore size of 9.2 nm for the mesoporous carbon shell The effectiveness of these MHM affinity microspheres for capture of low-concentration peptides was evaluated by standard peptides, complex protein digests, and real biological samples. These multifunctional hollow carbon microspheres can realize rapid capture and convenient separation of low-concentration peptides. They were validated to have better performance than magnetic mesoporous silica and commercial peptide-enrichment products. In addition, they can be easily recycled and present excellent reusability. Therefore, it is expected that this work may provide a promising tool for high-throughput discovery of peptide biomarkers from biological samples for disease diagnosis and other biomedical applications.
机译:通过一种简便的自我牺牲方法,可以从复杂的生物样品中快速捕获低丰度的肽,从而制备出嵌入磁性纳米颗粒(表示为MHM)的中孔和中空碳微球。形态,结构,表面性质和磁性都具有很好的特征。空心磁性碳微球在室温下的饱和磁化值为130.2 emu g〜(-1),Brunauer-Emmett-Teller比表面积为48.8 m2 g〜(-1),平均孔径为9.2 nm。介孔碳壳这些MHM亲和力微球捕获低浓度肽的有效性通过标准肽,复杂的蛋白质消化物和真实的生物样品进行了评估。这些多功能的中空碳微球可以实现快速捕获和方便地分离低浓度肽。经过验证,它们的性能优于磁性介孔二氧化硅和商业化的富肽产品。此外,它们可以轻松回收利用,并具有出色的可重复使用性。因此,期望这项工作可以为从疾病诊断和其他生物医学应用的生物样品中高通量发现肽生物标志物提供有希望的工具。

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