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Structural Changes of Polysulfone Membrane Use for Hemodialysis in the Consecutive Regime. Nanometric Analysis by AFM

机译:连续体制下用于血液透析的聚砜膜的结构变化。原子力显微镜的纳米分析

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Nowadays, the hemodialytic treatment of patients with either acute or chronic renal failure has been improved by promoting biocompatibiliry in the use of new materials and improve membrane surface characteristics. Low and high flux polysulfone membranes (PM) used in dialysis and ultra filtration have been studied in order to understand the geometry and surface chemistry of the pores at inner (nanometric) and outer (micrometric) membrane parts. The surface changes of polysulfone cartridge membrane (PM) during different number of consecutive reuse trials: after 1st, 10th and 23th times of use. The morphology of the hollow fibers surfaces was studied by means of the atomic force microscopy (AFM) imaging and the surface roughness analysis. The roughness of both inner and outer part of PM surface increases with numbers of reuse trails. Thus, small and medium size pores were wiped out when the number of uses changed from zero to 23 on the outer surface. The pore density decreases. The inner part of membrane shows some nanometric size deformation in forms of new openings and raptures. The AFM analysis show differences in the PM morphology at the nanometric level, not previously revealed, which could be important in the evaluation of the PM.
机译:如今,通过使用新材料促进生物相容性并改善膜表面特性,已经改善了对急性或慢性肾衰竭患者的血液透析治疗。为了了解内部(纳米)和外部(微米)膜部分的孔的几何形状和表面化学性质,已经对用于透析和超滤的低通量和高通量聚砜膜(PM)进行了研究。在多次连续重复使用试验期间,聚砜滤芯膜(PM)的表面变化:使用1次,10次和23次之后。通过原子力显微镜(AFM)成像和表面粗糙度分析研究了中空纤维表面的形态。 PM表面的内部和外部的粗糙度随着重复使用痕迹的数量而增加。因此,当在外表面上使用次数从零变为23时,擦拭了中小尺寸的孔。孔密度降低。膜的内部以新的开口和破裂的形式显示出一些纳米尺寸的变形。 AFM分析显示了纳米级PM形态的差异,以前没有发现过,这在PM的评估中可能很重要。

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