Yamada Shinya, Ota Yoshio, Obata Akiko, Kasuga Toshihiro
Division of Advanced Ceramics, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya 466-8555, Japan.
Yabashi Industries Co., Ltd., 226 Akasaka-cho, Ogaki 503-2213, Japan.
Biomed Mater Eng. 2017;28(1):47-56. doi: 10.3233/BME-171655.
Inorganic ions released from bioceramics and bioactive glasses have been reported to influence osteogenic cell functions. Cell responses depend on types of the ions provided, for example, silicate ion has been found to up-regulate their proliferation, differentiation and mineralization.
Mouse osteoblast-like cells (MC3T3-E1) were cultured in media containing silicate and calcium ions with/without magnesium ion to evaluate their combined effects on the cell's functions.
The cells were cultured in the media containing the extract of silicate-containing vaterite (SiV) and magnesium- and siloxane-containing one (MgSiV) and normal medium and then their adhesion, proliferation, differentiation and mineralization were evaluated.
The adhesion of the cells was enhanced when they were cultured in the medium containing MgSiV-extract. Their proliferation and differentiation were up-regulated in both media containing MgSiV-extract and SiV-extract. In particular, the MgSiV-extract significantly enhanced their differentiation than the SiV-extract. This was supported by the mineralization test's results, which showed a large amount of mineral deposit was observed in the cells cultured in the MgSiV-extract medium.
Providing the three kinds of ions was effective for up-regulating the cell's mineralization compared to providing silicate and calcium ions without magnesium ion.
据报道,生物陶瓷和生物活性玻璃释放的无机离子会影响成骨细胞功能。细胞反应取决于所提供离子的类型,例如,已发现硅酸根离子可上调其增殖、分化和矿化。
将小鼠成骨样细胞(MC3T3-E1)培养于含硅酸根和钙离子且有/无镁离子的培养基中,以评估它们对细胞功能的联合作用。
将细胞培养于含含硅球霰石提取物(SiV)、含镁和硅氧烷提取物(MgSiV)的培养基及正常培养基中,然后评估其黏附、增殖、分化和矿化情况。
当细胞在含MgSiV提取物的培养基中培养时,其黏附增强。在含MgSiV提取物和SiV提取物的培养基中,细胞的增殖和分化均上调。特别是,MgSiV提取物比SiV提取物更显著地增强了细胞分化。矿化试验结果支持了这一点,该结果显示在含MgSiV提取物的培养基中培养的细胞中观察到大量矿物质沉积。
与提供不含镁离子的硅酸根和钙离子相比,提供这三种离子对上调细胞矿化有效。