Machida-Sano Ikuko, Hirakawa Makoto, Matsumoto Hiroki, Kamada Mitsuki, Ogawa Sakito, Satoh Nao, Namiki Hideo
Department of Biology, School of Education, Waseda University, 2-2 Wakamatsu-cho, Shinjuku-ku, Tokyo 162-8480, Japan.
Biomed Mater. 2014 Apr;9(2):025007. doi: 10.1088/1748-6041/9/2/025007. Epub 2014 Feb 4.
In this study we investigated differences in the characteristics determining the suitability of five types of ion (Fe(3+), Al(3+), Ca(2+), Ba(2+) and Sr(2+))-cross-linked alginate films as culture substrates for cells. Human dermal fibroblasts were cultured on each alginate film to examine the cell affinity of the alginates. Since cell behavior on the surface of a material is dependent on the proteins adsorbed to it, we investigated the protein adsorption ability and surface features (wettability, morphology and charge) related to the protein adsorption abilities of alginate films. We observed that ferric, aluminum and barium ion-cross-linked alginate films supported better cell growth and adsorbed higher amounts of serum proteins than other types. Surface wettability analysis demonstrated that ferric and aluminum ion-cross-linked alginates had moderate hydrophilic surfaces, while other types showed highly hydrophilic surfaces. The roughness was exhibited only on barium ion-cross-linked alginate surface. Surface charge measurements revealed that alginate films had negatively charged surfaces, and showed little difference among the five types of gel. These results indicate that the critical factors of ionically cross-linked alginate films determining the protein adsorption ability required for their cell compatibility may be surface wettability and morphology.
在本研究中,我们调查了决定五种离子(Fe(3+)、Al(3+)、Ca(2+)、Ba(2+)和Sr(2+))交联海藻酸盐膜作为细胞培养底物适用性的特性差异。将人皮肤成纤维细胞培养在每种海藻酸盐膜上,以检测海藻酸盐的细胞亲和力。由于材料表面的细胞行为取决于吸附在其上的蛋白质,我们研究了与海藻酸盐膜蛋白质吸附能力相关的蛋白质吸附能力和表面特性(润湿性、形态和电荷)。我们观察到,铁离子、铝离子和钡离子交联的海藻酸盐膜比其他类型的膜更能支持细胞生长,且吸附的血清蛋白量更高。表面润湿性分析表明,铁离子和铝离子交联的海藻酸盐具有适度亲水性表面,而其他类型则表现出高度亲水性表面。粗糙度仅在钡离子交联的海藻酸盐表面出现。表面电荷测量显示,海藻酸盐膜表面带负电荷,且这五种凝胶之间差异不大。这些结果表明,离子交联海藻酸盐膜决定其细胞相容性所需蛋白质吸附能力的关键因素可能是表面润湿性和形态。