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Slit pores preferred over cylindrical pores for high selectivity in biomolecular filtration

机译:狭缝孔优选在圆柱形孔上,用于生物分子过滤的高选择性

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Microelectromechanical systems (MEMS) have enabled the fabrication of silicon nanopore membranes (SNM) with uniform non-overlapping "slit shaped" pores. The application of SNM has been suggested for high selectivity of biomolecules in a variety of medical filtration applications. The aim of this study was to rigorously quantify the differences in sieving between slit pore SNM and more commonly modeled cylindrical pore membranes, including effects of the extended Derjaguin, Landau, Verwey, and Overbeek (XDLVO) interactions. Applying equations derived for SNM in previous work, we compare the partition coefficient of slit and cylindrical pore membranes while accounting for both steric and XDLVO interactions. Simple, steric approximations demonstrate that slit pore membranes exhibit significantly lower partition coefficients than cylindrical pore models. Incorporating XDLVO interactions results in an even more marked difference between slit pore and cylindrical pore membranes. These partition coefficients were used to evaluate changes in beta-2-microglobulin (B2M) selectivity. The data demonstrate that XDLVO interactions increase the selectivity advantage that slit pores possess over cylindrical pores, particularly for larger values of the acid-base decay constant. Finally, the bovine serum albumin (BSA) to B2M selectivity ratio was investigated. The selectivity ratio appears larger in slit pores than cylindrical pores for all cases, indicating that slit pores are particularly well suited for hemofiltration applications. The results of this study have significant implications for the application of SNM in membrane processes where highly selective separation of biomolecules is desirable. (C) 2017 Published by Elsevier Inc.
机译:微机电系统(MEMS)使硅纳米孔膜(SNM)的制造具有均匀的非重叠“狭缝形”孔。已经提出了SNM的应用在各种医用过滤应用中的生物分子的高选择性。本研究的目的是严格地量化裂隙孔SNM和更常见的圆柱形孔膜之间筛分之间的差异,包括扩展Derjaguin,Landau,Verwey和超过伯(XDLVO)相互作用的效果。在先前的工作中应用于SNM的源等式,我们比较狭缝和圆柱形孔膜的分区系数,同时占STERIC和XDLVO相互作用。简单的空间近似表明,狭缝孔隙膜表现出比圆柱形孔模型显着降低的分区系数。掺入XDLVO相互作用导致狭缝孔和圆柱形孔膜之间的甚至更明显的差异。这些分区系数用于评估β-2微胶蛋白(B2M)选择性的变化。数据表明,XDLVO相互作用增加了狭缝孔在圆柱形孔上具有的选择性优势,特别是对于酸碱衰减常数的较大值。最后,研究了牛血清白蛋白(BSA)至B2M选择性比。对于所有情况的圆柱孔隙孔隙孔隙尺寸的选择性比例显得较大,表明狭缝孔特别适合于血液过滤应用。该研究的结果对膜过​​程中的SNM施加了显着意义,其中需要高选择性分离的生物分子。 (c)2017年由elsevier公司发布

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