Ito Yoichiro
Bioseparation Technology Laboratory, Biochemistry and Biophysics Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Bldg. 10, Room 8N230, 10 Center Drive, Bethesda, MD 20892-1762, USA.
Chem Eng Process. 2010 Jul;49(7):782-792. doi: 10.1016/j.cep.2009.08.003.
Retention of the stationary phase of aqueous-aqueous polymer phase systems is improved by a spiral column configuration which utilizes the radially acting centrifugal force along the spiral pitch to retain the heavier phase in the outer portion and the lighter phase in the inner portion of the spiral channel. For the separation of proteins which has low mass transfer rates, the system needs further modification of the separation channel to interrupt the laminar flow and enhance mixing of the two phases. Two spiral column assemblies were developed, one using a disk with spiral grooves and the other, the spiral tube support which accommodates the multiple spiral layers made from a single piece of fluorinated plastic tubing. In the spiral disk assembly, the best protein separation is achieved by the mixer-settler system which vigorously mixes two phases by vibrating glass beads placed in every other section of barricaded spiral channel, while in the spiral tube assembly the partition efficiency of proteins is enhanced by compressing the tubing to interrupt the laminar flow of the mobile phase. In both systems protein samples were well resolved by choosing the suitable elution modes.
通过螺旋柱配置可提高水-水聚合物相系统固定相的保留率,该配置利用沿螺旋间距径向作用的离心力,将较重的相保留在螺旋通道的外部,较轻的相保留在螺旋通道的内部。对于传质速率较低的蛋白质分离,该系统需要对分离通道进行进一步改进,以中断层流并增强两相的混合。开发了两种螺旋柱组件,一种使用带有螺旋槽的圆盘,另一种是螺旋管支架,它容纳由单根氟化塑料管制成的多个螺旋层。在螺旋盘组件中,通过混合澄清器系统实现最佳的蛋白质分离,该系统通过在每隔一段的封闭螺旋通道中振动玻璃珠来剧烈混合两相,而在螺旋管组件中,通过压缩管道以中断流动相的层流来提高蛋白质的分配效率。在这两种系统中,通过选择合适的洗脱模式,蛋白质样品都得到了很好的分离。