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用于人工肺的聚三氟氯乙烯-丙烯共混膜的制备

Preparation of Hyflon AD/Polypropylene Blend Membrane for Artificial Lung.

作者信息

Li Jie, He Ting, Chen Hongyu, Cheng Yangming, Drioli Enrico, Wang Zhaohui, Cui Zhaoliang

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 210009, China.

National Engineering Research Center for Special Separation Membrane, Nanjing Tech University, Nanjing 210009, China.

出版信息

Membranes (Basel). 2023 Jul 14;13(7):665. doi: 10.3390/membranes13070665.

Abstract

A high-performance polypropylene hollow fiber membrane (PP-HFM) was prepared by using a binary environmentally friendly solvent of polypropylene as the raw material, adopting the thermally induced phase separation (TIPS) method, and adjusting the raw material ratio. The binary diluents were soybean oil (SO) and acetyl tributyl citrate (ATBC). The suitable SO/ATBC ratio of 7/3 was based on the size change of the L-L phase separation region in PP-SO/ATBC thermodynamic phase diagram. Through the characterization and comparison of the basic performance of PP-HFMs, it was found that with the increase of the diluent content in the raw materials, the micropores of outer surface of the PP-HFM became larger, and the cross section showed a sponge-like pore structure. The fluoropolymer, Hyflon ADx, was deposited on the outer surface of the hollow fiber membrane using a physical modification method of solution dipping. After modification, the surface pore size of the Hyflon AD40L modified membranes decreased; the contact angle increased to around 107°; the surface energy decreased to 17 mN·m; and the surface roughness decreased to 17 nm. Hyflon AD40L/PP-HFMs also had more water resistance properties from the variation of wetting curve. For biocompatibility of the membrane, the adsorption capacity of the modified PP membrane for albumin decreased from approximately 1.2 mg·cm to 1.0 mg·cm, and the adsorption of platelets decreased under fluorescence microscopy. The decrease in blood cells and protein adsorption in the blood prolonged the clotting time. In addition, the hemolysis rate of modified PP membrane was reduced to within the standard of 5%, and the cell survival rate of its precipitate was above 100%, which also indicated the excellent biocompatibility of fluoropolymer modified membrane. The improvement of hydrophobicity and blood compatibility makes Hyflon AD/PP-HFMs have the potential for application in membrane oxygenators.

摘要

以聚丙烯二元环保溶剂为原料,采用热致相分离(TIPS)法并调整原料比例,制备了一种高性能聚丙烯中空纤维膜(PP-HFM)。二元稀释剂为大豆油(SO)和乙酰柠檬酸三丁酯(ATBC)。基于PP-SO/ATBC热力学相图中L-L相分离区域的尺寸变化,确定了7/3的合适SO/ATBC比例。通过对PP-HFMs基本性能的表征和比较发现,随着原料中稀释剂含量的增加,PP-HFM外表面的微孔变大,横截面呈现海绵状孔结构。采用溶液浸渍的物理改性方法,将含氟聚合物Hyflon ADx沉积在中空纤维膜的外表面。改性后,Hyflon AD40L改性膜的表面孔径减小;接触角增大到107°左右;表面能降低到17 mN·m;表面粗糙度降低到17 nm。从润湿曲线的变化来看,Hyflon AD40L/PP-HFMs也具有更强的耐水性。对于膜的生物相容性,改性PP膜对白蛋白的吸附量从约1.2 mg·cm下降到1.0 mg·cm,在荧光显微镜下血小板的吸附减少。血液中血细胞和蛋白质吸附的减少延长了凝血时间。此外,改性PP膜的溶血率降低到5%以内,其沉淀物的细胞存活率高于100%,这也表明含氟聚合物改性膜具有优异的生物相容性。疏水性和血液相容性的改善使Hyflon AD/PP-HFMs具有在膜式氧合器中应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3c0/10383265/5cc36f0ce69b/membranes-13-00665-g001.jpg

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