Lusvardi G, Malavasi G, Menabue L, Menziani M C, Pedone A, Segre U, Aina V, Perardi A, Morterra C, Boccafoschi F, Gatti S, Bosetti M, Cannas M
University of Modena and Reggio Emilia, Via Campi 483 41100 Modena, Italy.
J Biomater Appl. 2008 May;22(6):505-26. doi: 10.1177/0885328207079731. Epub 2007 Jul 10.
Two series of glasses of general formula (2-p) SiO2.1.1Na2O.CaO.pP2O5.xZnO (p=0.10, 0.20; x=0.0, 0.16, 0.35, and 0.78) have been analyzed for physico-chemical surface features before and after contact with simulated body fluid, morphological characteristics, and osteoblast-like cells behavior when cultured on them. The resulted good cell adhesion and growth, along with nonsignificant changes of the focal contacts, allow the authors to indicate HZ5 and HP5Z5 glasses as the ones having optimal ratio of Zn/P to maintain acceptable cell behavior, comparable to the bioactive glass (Bioglass) used as a control; results are also rationalized by means of three-dimensional models derived by molecular dynamic simulations, with decomposition and conversion rates optimized with respect to the parent Hench's Bioglass.
对两组通式为(2 - p)SiO₂·1.1Na₂O·CaO·pP₂O₅·xZnO(p = 0.10, 0.20;x = 0.0, 0.16, 0.35和0.78)的玻璃进行了分析,研究其与模拟体液接触前后的物理化学表面特征、形态特征以及在其上培养时成骨样细胞的行为。良好的细胞黏附与生长结果,以及焦点接触无显著变化,使得作者指出HZ5和HP5Z5玻璃具有维持可接受细胞行为的最佳锌/磷比例,与用作对照的生物活性玻璃(Bioglass)相当;通过分子动力学模拟得到的三维模型也对结果进行了合理化分析,相对于原始的Hench生物活性玻璃,其分解和转化率得到了优化。