Obata Akiko, Tokuda Shingo, Kasuga Toshihiro
Graduate School of Engineering, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya 466-8555, Japan.
Acta Biomater. 2009 Jan;5(1):57-62. doi: 10.1016/j.actbio.2008.08.004. Epub 2008 Aug 26.
A biodegradable composite with silicon-species releasability was prepared using poly(l-lactic acid) (PLLA) and silicon-doped vaterite (SiV) particles. SiV with particle diameters of approximately 1 mum was prepared using aminopropyltriethoxysilane (APTES) as the silicon species by a carbonation process and then mixed with PLLA in methylene chloride according to a SiV to PLLA weight ratio of 1:2, resulting in the preparation of composite slurry. A composite film was prepared by dipping a cover glass in the slurry. The composite films were incubated in a culture medium for 7 days and the silicon concentration of the medium was measured to estimate the species releasability of the composites. A trace amount of silicon species was continuously released from the composites for 7 days, the amount depending on the content of APTES in SiV. On the composite releasing silicon species, mouse osteoblast-like cells (MC3T3-E1 cells) were significantly stimulated to proliferate and differentiate in comparison with those on a composite containing no silicon species. The proliferation of the cells on the composites releasing larger amounts of silicon species (0.51mgl(-1)day(-1)) was higher than that on the composites releasing smaller amount of the species (0.21mgl(-1)day(-1)). The silicon species in the composites were effective in enhancing the cellular functions. The composites were expected to be useful as a scaffold material for bone tissue engineering.
采用聚(L-乳酸)(PLLA)和掺硅球霰石(SiV)颗粒制备了具有硅物种释放能力的可生物降解复合材料。通过碳酸化过程,以氨丙基三乙氧基硅烷(APTES)作为硅物种制备了粒径约为1μm的SiV,然后将其与PLLA按SiV与PLLA重量比1:2在二氯甲烷中混合,得到复合浆料。通过将盖玻片浸入浆料中来制备复合膜。将复合膜在培养基中孵育7天,并测量培养基中的硅浓度,以评估复合材料的物种释放能力。复合材料在7天内持续释放微量的硅物种,释放量取决于SiV中APTES的含量。与不含硅物种的复合材料相比,释放硅物种的复合材料上的小鼠成骨样细胞(MC3T3-E1细胞)显著受到刺激而增殖和分化。释放大量硅物种(0.51mg l⁻¹天⁻¹)的复合材料上细胞的增殖高于释放少量硅物种(0.21mg l⁻¹天⁻¹)的复合材料。复合材料中的硅物种在增强细胞功能方面是有效的。这些复合材料有望作为骨组织工程的支架材料。