Jmeian Yazen, El Rassi Ziad
Department of Chemistry, Oklahoma State University, Stillwater, OK 74075, USA.
Electrophoresis. 2008 Jul;29(13):2801-11. doi: 10.1002/elps.200800039.
In this investigation, an integrated microcolumn-based fluidic platform for the simultaneous depletion of high-abundance proteins and the subsequent on-line concentration/capturing of medium- and low-abundance proteins from human serum has been introduced. The platform consists of on-line coupling of tandem affinity micorcolumns to an RP microcolumn to achieve first the depletion of high-abundance proteins by the tandem affinity microcolumns followed by the concentration and capturing of medium- and low-abundance proteins by the RP microcolumn. The tandem affinity microcolumns are based on macroporous monoliths characterized by their relatively high permeability in pressure-driven flow while the RP microcolumn is packed with polymeric particles with an average particle diameter of 20 microm giving rise to a very little back pressure, thus allowing fast flow velocity across the coupled columns format and consequently short processing time of serum samples prior to analysis by 2-DE. The microcolumn-based fluidic platform was applied to serum samples from osteoarthritis (OA) donors before and after soy protein (SP) supplementation, and from healthy donors, and the resulting depleted serum samples from high-abundance proteins were profiled for protein expression by 2-DE. In general, the protein expression was lower in serum of the same OA patient after soy treatment than before soy treatment. Several proteins were down-regulated after soy treatment with transthyretin being the most affected by the SP supplementation. In addition, with respect to serum from healthy donors, the sera from OA patients showed difference in proteins expression.
在本研究中,引入了一种基于微柱的集成流体平台,用于同时去除人血清中的高丰度蛋白质,并随后在线浓缩/捕获中低丰度蛋白质。该平台由串联亲和微柱与反相(RP)微柱在线耦合组成,首先通过串联亲和微柱去除高丰度蛋白质,然后通过RP微柱浓缩和捕获中低丰度蛋白质。串联亲和微柱基于大孔整体柱,其在压力驱动流中具有相对较高的渗透率,而RP微柱填充有平均粒径为20微米的聚合物颗粒,产生的背压非常小,从而允许跨耦合柱形式的快速流速,进而缩短血清样品在二维电泳(2-DE)分析前的处理时间。基于微柱的流体平台应用于骨关节炎(OA)供体在补充大豆蛋白(SP)前后以及健康供体的血清样品,对去除高丰度蛋白质后的血清样品进行2-DE蛋白质表达谱分析。一般来说,同一OA患者大豆治疗后的血清中蛋白质表达低于大豆治疗前。大豆治疗后几种蛋白质表达下调,甲状腺素转运蛋白受SP补充影响最大。此外,与健康供体的血清相比,OA患者的血清在蛋白质表达上存在差异。