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一种厚度可控的基于 Mg-MOFs 的磁性石墨烯复合材料的制备,作为一种新型的亲水性基质,用于有效鉴定人尿中的糖肽。

Preparation of a thickness-controlled Mg-MOFs-based magnetic graphene composite as a novel hydrophilic matrix for the effective identification of the glycopeptide in the human urine.

机构信息

Department of Chemistry and Institutes of Biomedical Sciences, Fudan University, Shanghai 200433, China.

出版信息

Nanoscale. 2019 Feb 21;11(8):3701-3709. doi: 10.1039/c8nr10074h.

DOI:10.1039/c8nr10074h
PMID:30742181
Abstract

The highly effective analysis of glycopeptides from complex biological samples is an attractive and critical topic all the time. In this study, a novel thickness-controlled hydrophilic Mg-metal organic frameworks (Mg-MOFs) coating-functionalized magnetic graphene composite (MagG@Mg-MOFs-1C) was prepared for the capture of the glycopeptides. The as-synthesized composite exhibits an ultralow limit of detection (0.1 fmol μL-1), a perfect size-exclusion effect (HRP digests/BSA protein/HRP protein, 1 : 500 : 500, w/w/w), and a high binding capacity (150 mg g-1), satisfying reusability and high recovery in the recognition of glycopeptides due to its outstanding characteristics including strong magnetic property, large surface area (617 m2 g-1), plenty of affinity sites, and excellent hydrophilicity. Furthermore, the MagG@Mg-MOFs-1C composite was successfully applied to selectively enriched glycopeptides in human urine. More excitingly, 406 N-glycosylation peptides corresponding to 185 glycoproteins were identified in the urine of the bladder cancer patients, in which these identified glycoproteins include the potential biomarkers (α-2-macroglobulin, complement C4-B, and α-1-antitrypsin) for the bladder cancer. This study suggests that the hydrophilic porous MOFs-functionalized composite has a great potential in the large-scale characterization of the low-abundance biomolecules in urine, opening a new avenue for the rapid and convenient diagnosis of the disease.

摘要

从复杂的生物样本中高效分析糖肽一直是一个热门且关键的课题。在这项研究中,我们制备了一种新型的厚度可控的亲水 Mg-金属有机骨架(Mg-MOFs)涂层功能化磁性石墨烯复合材料(MagG@Mg-MOFs-1C),用于捕获糖肽。所合成的复合材料表现出超低的检测限(0.1 fmol μL-1)、完美的尺寸排阻效应(HRP 消化物/BSA 蛋白/HRP 蛋白,1:500:500,w/w/w)和高结合能力(150 mg g-1),由于其出色的特性,如强磁性、大表面积(617 m2 g-1)、丰富的亲和位点和优异的亲水性,在糖肽的识别中具有良好的可重复使用性和高回收率。此外,MagG@Mg-MOFs-1C 复合材料成功地应用于选择性富集人尿液中的糖肽。更令人兴奋的是,在膀胱癌患者的尿液中鉴定到了 406 个对应于 185 种糖蛋白的 N-糖肽,其中这些鉴定出的糖蛋白包括膀胱癌的潜在生物标志物(α-2-巨球蛋白、补体 C4-B 和α-1-抗胰蛋白酶)。本研究表明,亲水多孔 MOFs 功能化复合材料在大规模表征尿液中低丰度生物分子方面具有巨大潜力,为疾病的快速便捷诊断开辟了新途径。

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