Meinert H, Reuter P, Mader J, Haidmann L, Northoff H
Universität Ulm, Lehrstuhl Chemie biokompatibler Verbindugen, Federal Republic of Germany.
Biomater Artif Cells Immobilization Biotechnol. 1992;20(1):115-24. doi: 10.3109/10731199209117861.
New surfactants have been synthesized with perfluorohexyl-groups as hydrophobic tail, a polyethyleneglycol-methylether as hydrophilic head and a prolongator between them. The prolongator units are -C4H8-, -C2H4OC5H10-, -C2H4OC3H6C(O)- and -CH2CH(OEt)CH2-. The surface tension, CMC and the interfacial tension water/perfluorocarbon were measured and the surface excess concentrations of the surfactant molecules were calculated. The influence of the surfactants on in vitro proliferation of human cell lines Hela and Molt 4 was investigated as a parameter for biocompatibility. The influence of the surfactants led to a reduction of cell proliferation depending on the concentration and chemical nature of the surfactant. Thus the prolongators changed the properties of the surfactants. They reduced the interfacial tension water/perfluorocarbon and improved the biocompatibility of surfactants.
已合成了新型表面活性剂,其疏水尾为全氟己基基团,亲水头部为聚乙二醇甲醚,两者之间有一个延长基团。延长基团单元为-C4H8-、-C2H4OC5H10-、-C2H4OC3H6C(O)-和-CH2CH(OEt)CH2-。测量了表面张力、临界胶束浓度以及水/全氟碳的界面张力,并计算了表面活性剂分子的表面过剩浓度。研究了这些表面活性剂对人细胞系Hela和Molt 4体外增殖的影响,以此作为生物相容性的一个参数。表面活性剂的影响导致细胞增殖减少,这取决于表面活性剂的浓度和化学性质。因此,延长基团改变了表面活性剂的性质。它们降低了水/全氟碳的界面张力,并提高了表面活性剂的生物相容性。