Tomanee Panarat, Hsu James T, Ito Yoichiro
Department of Chemical Engineering, Biopharmaceutical Technology Institute, Lehigh University, Bethlehem, Pennsylvania 18015, USA.
Biotechnol Prog. 2006 Mar-Apr;22(2):532-7. doi: 10.1021/bp058002g.
Fractionation of clarified E. coli lysate components in bench-scale and preparative-scale centrifugal precipitation chromatography (CPC), using a solution of cationic surfactant cetyltrimethylammonium bromide (CTAB) containing 0.5 M NaCl as precipitant, are compared here. Step gradient of CTAB from 0.50% to 0.16% (w/v) gave a successful fractionation in bench-scale CPC; however, a linear gradient of lower CTAB concentration, 0.20-0% (w/v), was used in the preparative scale and resulted in similar fractionation. The preparative-scale CPC has a superior sample loading capacity by the use of tubular dialysis membrane inside convoluted tubing as the separation channel. In this study, the quantity of the sample loaded into the preparative CPC was about 15 times more than that in the bench scale, and in a single run the preparative CPC could prepare approximately 3 mg of plasmid DNA with about 96% of RNA removed. The higher surface area per length of the separation channel in the preparative CPC was believed to benefit mass transfer of CTAB across the membrane, leading to less CTAB being required in the process.
本文比较了在台式规模和制备规模的离心沉淀色谱法(CPC)中,使用含有0.5 M氯化钠的阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)溶液作为沉淀剂,对澄清的大肠杆菌裂解物成分进行分级分离的情况。在台式规模的CPC中,CTAB从0.50%到0.16%(w/v)的阶梯梯度实现了成功的分级分离;然而,在制备规模中使用了较低CTAB浓度的线性梯度,即0.20 - 0%(w/v),并得到了类似的分级分离效果。制备规模的CPC通过在回旋管内使用管状透析膜作为分离通道,具有更高的样品加载能力。在本研究中,加载到制备规模CPC中的样品量比台式规模大约多15倍,并且在单次运行中,制备规模的CPC可以制备约3 mg的质粒DNA,去除约96%的RNA。据信,制备规模CPC中分离通道每单位长度的更高表面积有利于CTAB跨膜的传质,从而在此过程中所需的CTAB更少。