Santocildes-Romero Martin E, Crawford Aileen, Hatton Paul V, Goodchild Rebecca L, Reaney Ian M, Miller Cheryl A
School of Clinical Dentistry, University of Sheffield, UK.
J Tissue Eng Regen Med. 2015 May;9(5):619-31. doi: 10.1002/term.2003. Epub 2015 Mar 11.
Bioactive glasses are known to stimulate bone healing, and the incorporation of strontium has the potential to increase their potency. In this study, calcium oxide in the 45S5 bioactive glass composition was partially (50%, Sr50) or fully (100%, Sr100) substituted with strontium oxide on a molar basis. The effects of the substitution on bioactive glass properties were studied, including density, solubility, and in vitro cytotoxicity. Stimulation of osteogenic differentiation was investigated using mesenchymal stromal cells obtained from rat bone marrow. Strontium substitution resulted in altered physical properties including increased solubility. Statistically significant reductions in cell viability were observed with the addition of bioactive glass powders to culture medium. Specifically, addition of ≥ 13.3 mg/ml of 45S5 bioactive glass or Sr50, or ≥ 6.7 mg/ml of Sr100, resulted in significant inhibition. Real-time PCR analyses detected the upregulation of genes associated with osteoblastic differentiation in the presence of all bioactive glass compositions. Some genes, including Alpl and Bglap, were further stimulated in the presence of Sr50 and Sr100. It was concluded that strontium-substituted bioactive glasses promoted osteogenesis in a differentiating bone cell culture model and, therefore, have considerable potential for use as improved bioactive glasses for bone tissue regeneration.
众所周知,生物活性玻璃能刺激骨愈合,而掺入锶有可能增强其效力。在本研究中,45S5生物活性玻璃成分中的氧化钙在摩尔基础上被部分(50%,Sr50)或完全(100%,Sr100)用氧化锶替代。研究了这种替代对生物活性玻璃性能的影响,包括密度、溶解度和体外细胞毒性。使用从大鼠骨髓获得的间充质基质细胞研究了成骨分化的刺激情况。锶替代导致物理性质改变,包括溶解度增加。向培养基中添加生物活性玻璃粉末后,观察到细胞活力有统计学意义的降低。具体而言,添加≥13.3mg/ml的45S5生物活性玻璃或Sr50,或≥6.7mg/ml的Sr100,会导致显著抑制。实时PCR分析检测到在所有生物活性玻璃成分存在的情况下,与成骨细胞分化相关的基因上调。在Sr50和Sr100存在的情况下,包括Alpl和Bglap在内的一些基因受到进一步刺激。得出的结论是,锶取代的生物活性玻璃在分化的骨细胞培养模型中促进了骨生成,因此,作为用于骨组织再生的改良生物活性玻璃具有相当大的应用潜力。