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含聚乙二醇、聚二甲基硅氧烷和聚五甲基环戊硅氧烷域的三组分膜的合成、渗透性及生物相容性

Synthesis, permeability and biocompatibility of tricomponent membranes containing polyethylene glycol, polydimethylsiloxane and polypentamethylcyclopentasiloxane domains.

作者信息

Kurian P, Kasibhatla B, Daum J, Burns C A, Moosa M, Rosenthal K S, Kennedy J P

机构信息

Institute of Polymer Science, The University of Akron, Akron, OH 44325-3909, USA.

出版信息

Biomaterials. 2003 Sep;24(20):3493-503. doi: 10.1016/s0142-9612(03)00189-3.

Abstract

The synthesis of "smart" tricomponent amphiphilic membranes containing poly(ethylene glycol) (PEG), polydimethylsiloxane (PDMS) and polypentamethylcyclopentasiloxane (PD(5)) domains is described. Contact angle hysteresis indicates that in air, the surfaces of such PEG/PD(5)/PDMS membranes are enriched by the hydrophobic components, PDMS and PD(5), while in water, the surfaces are rich in the hydrophilic PEG. The oxygen permeability of a series of membranes with varying M(c,hydrophilic) (M(n,PEG)=4600, 10,000 and 20,000 g/mol) and varying PEG/PD(5)/PDMS compositions was studied. Oxygen permeability increased with the amount of PDMS in the membrane. The molecular weight cut-off (MWCO) ranges and permeability coefficients of insulin through a series of PEG/PD(5)/PDMS(=29/14/57) membranes with varying M(c,hydrophilic) were determined. Insulin permeability is directly related to M(c,hydrophilic) of the membrane. MWCO studies show that the membranes are semipermeable to, i.e., allow the transport of smaller proteins such as insulin (M(n)=5733 g/mol, R(s)=1.34 nm) and cytochrome c (M(n)=12,400 g/mol, R(s)=1.63 nm), but are barriers to larger proteins such as albumin (M(n)=66,000 g/mol, R(s)=3.62 nm). Implantation of representative membranes in rats showed them to be biocompatible. According to these studies, PEG/PD(5)/PDMS membranes may be suitable for biological applications, e.g., immunoisolation of cells.

摘要

描述了包含聚乙二醇(PEG)、聚二甲基硅氧烷(PDMS)和聚五甲基环戊硅氧烷(PD(5))域的“智能”三组分两亲性膜的合成。接触角滞后表明,在空气中,此类PEG/PD(5)/PDMS膜的表面富含疏水成分PDMS和PD(5),而在水中,表面富含亲水的PEG。研究了一系列具有不同亲水性重均分子量(M(c,hydrophilic))(M(n,PEG)=4600、10,000和20,000 g/mol)以及不同PEG/PD(5)/PDMS组成的膜的氧气渗透性。氧气渗透性随膜中PDMS含量的增加而增加。测定了一系列具有不同M(c,hydrophilic)的PEG/PD(5)/PDMS(=29/14/57)膜对胰岛素的截留分子量(MWCO)范围和渗透系数。胰岛素渗透性与膜的M(c,hydrophilic)直接相关。MWCO研究表明,这些膜对较小的蛋白质如胰岛素(M(n)=5733 g/mol,R(s)=1.34 nm)和细胞色素c(M(n)=12,400 g/mol,R(s)=1.63 nm)具有半渗透性,即允许其运输,但对较大的蛋白质如白蛋白(M(n)=66,000 g/mol,R(s)=3.62 nm)是屏障。将代表性膜植入大鼠体内显示它们具有生物相容性。根据这些研究,PEG/PD(5)/PDMS膜可能适用于生物应用,例如细胞的免疫隔离。

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