Trimpert Christiane, Boese Gregor, Albrecht Wolfgang, Richau Klaus, Weigel Thomas, Lendlein Andreas, Groth Thomas
GKSS Research Centre, Institute of Polymer Research, Kantstrasse 55, D-14513 Teltow, Germany.
Macromol Biosci. 2006 Apr 12;6(4):274-84. doi: 10.1002/mabi.200500238.
Poly(ether imide) (PEI) membranes were modified with a linear low-molecular weight (PETIM_0.6) and a branched high-molecular weight poly(ethylene imine) (PETIM_60). The membrane surfaces became more hydrophilic and the zeta potentials were shifted from negative to positive zeta values after immobilisation of both PETIM. These measurements also indicated the presence of a swollen surface layer in the case of PETIM_60, while a regular structuring of the surface was observed with scanning force microscopy for PETIM_0.6. A human keratinocyte cell line HaCaT was cultured on the different membranes. It was found that HaCaT cell growth was stimulated by PETIM_0.6. Cells reached earlier confluence on this substratum, while their growth was inhibited on a PEI membrane modified with PETIM_60, which makes PEI membranes modified with PETIM_0.6 a promising material for in vitro culture of epidermal transplants.
聚醚酰亚胺(PEI)膜用线性低分子量(PETIM_0.6)和支化高分子量聚乙烯亚胺(PETIM_60)进行了改性。固定两种PETIM后,膜表面变得更具亲水性,且ζ电位从负值变为正值。这些测量还表明,PETIM_60存在肿胀的表面层,而通过扫描力显微镜观察到PETIM_0.6的表面具有规则结构。在不同的膜上培养人角质形成细胞系HaCaT。发现PETIM_0.6刺激了HaCaT细胞的生长。细胞在此基质上更早达到汇合,而在用PETIM_60改性的PEI膜上其生长受到抑制,这使得用PETIM_0.6改性的PEI膜成为用于表皮移植体外培养的有前景的材料。