State Key Laboratory of Molecular, Engineering of Polymers, Department of Macromolecular Science and Laboratory of Advanced Materials, Fudan University, Shanghai, 200433, People's Republic of China.
Small. 2014 Apr 9;10(7):1379-86. doi: 10.1002/smll.201302841. Epub 2013 Dec 5.
Efficient enrichment of specific glycoproteins from complex biological samples is of great importance towards the discovery of disease biomarkers in biological systems. Recently, phenylboronic acid-based functional materials have been widely used for enrichment of glycoproteins. However, such enrichment was mainly carried out under alkaline conditions, which is different to the status of glycoproteins in neutral physiological conditions and may cause some unpredictable degradation. In this study, on-demand neutral enrichment of glycoproteins from crude biological samples is accomplished by utilizing the reversible interaction between the cis-diols of glycoproteins and benzoboroxole-functionalized magnetic composite microspheres (Fe3O4/PAA-AOPB). The Fe3O4/PAA-AOPB composite microspheres are deliberately designed and constructed with a high-magnetic-response magnetic supraparticle (MSP) core and a crosslinked poly(acrylic acid) (PAA) shell anchoring abundant benzoboroxole functional groups on the surface. These nanocomposites possessed many merits, such as large enrichment capacity (93.9 mg/g, protein/beads), low non-specific adsorption, quick enrichment process (10 min) and magnetic separation speed (20 s), and high recovery efficiency. Furthermore, the as-prepared Fe3O4/PAA-AOPB microspheres display high selectivity to glycoproteins even in the E. coli lysate or fetal bovine serum, showing great potential in the identify of low-abundance glycoproteins as biomarkers in real complex biological systems for clinical diagnoses.
从复杂的生物样本中高效富集特定糖蛋白对于在生物系统中发现疾病生物标志物非常重要。最近,基于苯硼酸的功能材料已被广泛用于糖蛋白的富集。然而,这种富集主要在碱性条件下进行,与中性生理条件下糖蛋白的状态不同,可能会导致一些不可预测的降解。在本研究中,通过利用糖蛋白顺式二醇与苯并硼唑功能化磁性复合微球(Fe3O4/PAA-AOPB)之间的可逆相互作用,实现了从粗生物样品中按需中性富集糖蛋白。Fe3O4/PAA-AOPB 复合微球是精心设计和构建的,具有高磁响应的磁性超粒子(MSP)核和交联的聚丙烯酸(PAA)壳,表面锚定丰富的苯并硼唑官能团。这些纳米复合材料具有许多优点,如高富集容量(93.9mg/g,蛋白质/珠)、低非特异性吸附、快速富集过程(10min)和磁分离速度(20s)以及高回收率。此外,所制备的 Fe3O4/PAA-AOPB 微球即使在大肠杆菌裂解物或胎牛血清中也对糖蛋白表现出高选择性,在实际复杂生物系统中作为生物标志物鉴定低丰度糖蛋白用于临床诊断方面具有巨大潜力。