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用于包裹胰岛的聚酰胺4,6膜:制备、物理化学性质及生物相容性研究

Polyamide 4,6 membranes for the encapsulation of Langerhans islets: preparation, physico-chemical properties and biocompatibility studies.

作者信息

Lhommeau C, Toillon S, Pith T, Kessler L, Jesser C, Pinget M

机构信息

Institut Charles Sadron, Strasbourg, France.

出版信息

J Mater Sci Mater Med. 1997 Mar;8(3):163-74. doi: 10.1023/a:1018575220505.

Abstract

Porous polyamide 4,6 membranes developed as semi-permeable and biocompatible membranes for the encapsulation of pancreatic islets were prepared by precipitation in water. Different membrane morphologies were obtained by varying the molecular weight of polyamide 4,6, the solvent evaporation time and the composition of the casting solution. Each membrane was submitted to differential scanning calorimetry and water flux measurements to study the total water content and the different kinds of water in correlation with its permeability performances. Their biocompatibility was first evaluated by a surface protein adsorption test. Of the various membranes, the one prepared by immersion in water after 5 minutes of solvent evaporation, of 15% KS200 polyamide 4,6 solution added with 1% of polyvinylpyrrolidone K30 seems to be the most promising. This membrane is characterized by a low adsorption of proteins, a high hydraulic coefficient and an asymmetric structure. Such a membrane represents a good candidate to be an efficient immunological barrier. It also exhibits good glucose and insulin diffusion properties. Moreover, rat islets cultivated on its surface were not affected by its presence and no important cell adhesion was noticed when implanted in mice. This membrane exhibits most of the properties suitable for the islet encapsulation with a view to developing a bioartificial pancreas.

摘要

通过在水中沉淀制备了作为用于包裹胰岛的半透性和生物相容性膜的多孔聚酰胺4,6膜。通过改变聚酰胺4,6的分子量、溶剂蒸发时间和浇铸溶液的组成,获得了不同的膜形态。对每个膜进行差示扫描量热法和水通量测量,以研究总含水量以及与其渗透性能相关的不同种类的水。首先通过表面蛋白质吸附试验评估它们的生物相容性。在各种膜中,由15%KS200聚酰胺4,6溶液添加1%聚乙烯吡咯烷酮K30后在溶剂蒸发5分钟后浸入水中制备的膜似乎是最有前途的。这种膜的特点是蛋白质吸附低、水力系数高且结构不对称。这样的膜是成为有效免疫屏障的良好候选者。它还表现出良好的葡萄糖和胰岛素扩散特性。此外,在其表面培养的大鼠胰岛不受其存在的影响,并且在植入小鼠时未观察到重要的细胞粘附。考虑到开发生物人工胰腺,这种膜表现出了适合胰岛封装的大多数特性。

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