首页> 外文期刊>Journal of Applied Polymer Science >PREFERABLE STRUCTURE OF POLY(ETHYLENE GLYCOL) FOR GRAFTING ONTO A CELLULOSIC MEMBRANE TO INCREASE HEMOCOMPATIBILITY WITHOUT REDUCTION IN SOLUTE PERMEABILITY OF THE MEMBRANE
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PREFERABLE STRUCTURE OF POLY(ETHYLENE GLYCOL) FOR GRAFTING ONTO A CELLULOSIC MEMBRANE TO INCREASE HEMOCOMPATIBILITY WITHOUT REDUCTION IN SOLUTE PERMEABILITY OF THE MEMBRANE

机译:聚(乙烯乙二醇)的优选结构,可接枝到纤维素膜上,以增加血液相容性,而不会降低膜的溶液渗透性

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摘要

Swelling layers formed by poly(ethylene glycol) (PEG) chains grafted onto surfaces of a cellulosic membrane are known to improve hemocompatibility of the membrane. Three types of hemodialysis membranes were derived from the same regenerated-cellulose hollow-fiber membrane by grafting PEG with different formulas onto the surfaces to clarify the influence of the grafted PEG chains on solute permeability of the membranes. Determination of volume fractions of nonfreezing water contained in the membranes by differential scanning calorimetry revealed that most of the PEG chains were grafted onto the external surfaces and less into the pores in the membranes. Permeability of vitamin B-12 for the PEG-grafted membranes except for the one with the shortest PEG chains was reduced as compared with the original membrane, while that of tritium-labeled water for all the PEG-grafted membranes was the same as that of the original membrane. Structural parameters only of the PEG-grafted membrane with the largest alkyl groups at the terminal of the PEG chains were different from those of the other PEG grafted and original membranes. The shorter PEG chains with the larger terminal alkyl groups are suitable for grafting onto a cellulosic membrane to increase hemocompatibility of the membrane without significant reduction in the solute permeability of the membrane. (C) 1995 John Wiley & Sons, Inc. [References: 8]
机译:已知由接枝到纤维素膜表面上的聚(乙二醇)(PEG)链形成的溶胀层可改善膜的血液相容性。通过将具有不同分子式的PEG接枝到表面上以阐明接枝PEG链对膜的溶质渗透性的影响,从相同的再生纤维素中空纤维膜衍生出三种类型的血液透析膜。通过差示扫描量热法测定膜中所含的非冷冻水的体积分数表明,大多数PEG链被接枝到外表面上,而很少接枝到膜的孔中。与原始膜相比,维生素B-12对PEG接枝膜的渗透性降低,而与原始膜相比,维生素B-12的渗透性降低,而all标记水对所有PEG接枝膜的渗透性均与原始膜相同。原始膜。仅在PEG链末端具有最大烷基的PEG接枝膜的结构参数不同于其他PEG接枝和原始膜的结构参数。具有较大末端烷基的较短PEG链适合于接枝到纤维素膜上,以增加膜的血液相容性,而不会显着降低膜的溶质渗透性。 (C)1995 John Wiley&Sons,Inc. [参考:8]

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