首页> 外文期刊>Journal of Membrane Science >PERMEATION MECHANISM OF DNA MOLECULES IN SOLUTION THROUGH CUPRAMMONIUM REGENERATED CELLULOSE HOLLOW FIBER (BMM(TM))
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PERMEATION MECHANISM OF DNA MOLECULES IN SOLUTION THROUGH CUPRAMMONIUM REGENERATED CELLULOSE HOLLOW FIBER (BMM(TM))

机译:DNA分子通过C再生纤维素空心纤维(BMM(TM))在溶液中的渗透机理

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We tried to clarify the membrane permeation mechanism of biopolymer DNA molecule in solution through cuprammonium regenerated cellulose hollow fiber (BMM(TM)) from the dependence of the permeability of the DNA molecule on the molecular weight (MW), the transmembrane pressure (Delta P), the total challenge dose, the original concentration of DNA and on the conformation of DNA and from the observation of the shape of the DNA molecule remaining in the membrane wall. The shape of the DNA molecule was observed using transmission electron microscopy (TEM), The permeability of DNA molecules decreased with an increase in the MW of the DNA molecule. The MW of the molecule which showed a permeability of more than 0.9 was 1 X 10(6) for the protein with global configuration and 1 x 10(8) for DNA, The linear protein of the blood coagulation factor VIII combined with von Willebrand factor (F-VIII with VWF) with MW of 2 X 10(7) showed a permeability similar to that of DNA rather than that of the global protein, When Delta P decreased, the permeability of DNA decreased. Electron microscope observation showed that the DNA molecules were elongated by the shear stress originated in the flow of the solution in pores. We can conclude that: (1) Protein and DNA permeate through BMM mainly based on sieving effects. (2) The molecules of DNA and F-VIII with VWF are considered to deform into a string shape along the stream line. The chemical structure of a molecule and the shear stress of filtration govern its deformability. The deformation of the molecule contributes to the permeability through BMM, (3) The sieving effect in working on the permeation of molecules should take into account their deformability in addition to their geometrical size. [References: 19]
机译:我们试图从DNA分子的渗透性对分子量(MW),跨膜压(Delta P)的依赖性来阐明通过铜铵再生纤维素中空纤维(BMM(TM))的溶液中生物聚合物DNA分子的膜渗透机制。 ),总攻击剂量,DNA的原始浓度以及DNA的构象以及对残留在膜壁上的DNA分子形状的观察。使用透射电子显微镜(TEM)观察DNA分子的形状。DNA分子的渗透性随着DNA分子的MW的增加而降低。对于整体构型的蛋白质,其渗透率大于0.9的分子的MW为1 X 10(6),对于DNA则为1 x 10(8)。凝血因子VIII的线性蛋白质与von Willebrand因子结合分子量为2 X 10(7)的(F-VIII与VWF)显示出与DNA相似的通透性,而不是整体蛋白。当Delta P降低时,DNA的通透性降低。电子显微镜观察表明,DNA分子因溶液在孔中流动而产生的剪切应力而伸长。我们可以得出以下结论:(1)蛋白质和DNA主要通过筛分作用透过BMM渗透。 (2)认为具有VWF的DNA和F-VIII分子沿流线变形为线状。分子的化学结构和过滤的切应力决定了它的可变形性。分子的变形有助于通过BMM的渗透性,(3)在分子渗透过程中的筛分效果,除了其几何尺寸外,还应考虑其可变形性。 [参考:19]

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