Chen Hemei, Qi Dawei, Deng Chunhui, Yang Penyuan, Zhang Xiangmin
Department of Chemistry and Institute of Biomedical Sciences, Fudan University, Shanghai, China.
Proteomics. 2009 Jan;9(2):380-7. doi: 10.1002/pmic.200800335.
In this work, for the first time, a novel C60-functionalized magnetic silica microsphere (designated C60-f-MS) was synthesized by radical polymerization of C60 molecules on the surface of magnetic silica microspheres. The resulting C60-f-MS microsphere has magnetite core and thin C60 modified silica shell, which endow them with useful magnetic responsivity and surface affinity toward low-concentration peptides and proteins. As a result of their excellent magnetic property, the synthesized C60-f-MS microspheres can be easily separated from sample solution without ultracentrifuge. The C60-f-MS microspheres were successfully applied to the enrichment of low-concentration peptides in tryptic protein digest and human urine via a MALDI-TOF MS analysis. Moreover, they were demonstrated to have enrichment efficiency for low-concentration proteins. Due to the novel materials maintaining excellent magnetic properties and admirable adsorption, the process of enrichment and desalting is very fast (only 5 min), convenient and efficient. As it has been demonstrated in the study, newly developed fullerene-derivatized magnetic silica materials are superior to those already available in the market. The facile and low-cost synthesis as well as the convenient and efficient enrichment process of the novel C60-f-MS microspheres makes it a promising candidate for isolation of low-concentration peptides and proteins even in complex biological samples such as serum, plasma, and urine or cell lysate.
在本研究中,首次通过C60分子在磁性二氧化硅微球表面的自由基聚合反应合成了一种新型的C60功能化磁性二氧化硅微球(命名为C60-f-MS)。所得的C60-f-MS微球具有磁铁矿核心和薄的C60修饰二氧化硅壳层,这赋予它们有用的磁响应性以及对低浓度肽和蛋白质的表面亲和力。由于其优异的磁性,合成的C60-f-MS微球无需超速离心即可轻松从样品溶液中分离出来。通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)分析,C60-f-MS微球成功应用于胰蛋白酶消化的蛋白质和人尿中低浓度肽的富集。此外,还证明它们对低浓度蛋白质具有富集效率。由于这种新型材料保持了优异的磁性和良好的吸附性,富集和脱盐过程非常快速(仅需5分钟)、方便且高效。正如该研究中所证明的,新开发的富勒烯衍生化磁性二氧化硅材料优于市场上现有的材料。新型C60-f-MS微球简便且低成本的合成方法以及方便高效的富集过程使其成为分离血清、血浆、尿液或细胞裂解液等复杂生物样品中低浓度肽和蛋白质的有前途的候选材料。