Huang Shu-Ching, Wu Buor-Chang, Ding Shinn-Jyh
School of Dentistry, Chung Shan Medical University, Taichung City 402, Taiwan.
J Mater Chem B. 2015 Jan 28;3(4):570-580. doi: 10.1039/c4tb01617c. Epub 2014 Nov 25.
Calcium-based bone cements are widely used in dental and orthopaedic surgery. Those based on calcium phosphate (CPCs) or calcium silicate (CSCs) have a number of favourable properties that encourage their clinical use in bone defect repair. The purpose of the present study was to compare the in vitro osteogenesis and bacteriostatic activity of BoneSource CPCs with home-made CSCs, particularly in regard to their facility for cell differentiation. Cement in vitro osteogenic activity was evaluated by incubating the cement specimens with human mesenchymal stem cells (hMSCs). The bacteriostatic activity of the two cements against Gram-positive (S. aureus) and Gram-negative (P. aeruginosa) bacterial strains was assessed using a bacteriostasis ratio assay and by inhibition zone examination. Compared with CPC, CSC was shown to promote greater proliferation and osteogenic differentiation (alkaline phosphatase and osteocalcin), and the formation of mineralization nodules of hMSCs. It is worth noting that CSC could effectively induce hMSC differentiation, even when the culture medium did not contain osteogenetic differentiation agents. Compared with CPC, CSC also showed significantly greater bacteriostatic activity, as revealed by inhibition zones and the bacteriostasis ratio. Our findings suggest that CSC is a useful bioactive material for bone repair in terms of inducing cell differentiation, and may be considered an alternative to CPCs.
钙基骨水泥在牙科和矫形外科手术中被广泛应用。基于磷酸钙(CPCs)或硅酸钙(CSCs)的骨水泥具有许多有利特性,这促使它们在骨缺损修复中得到临床应用。本研究的目的是比较BoneSource CPCs与自制CSCs的体外成骨和抑菌活性,特别是在细胞分化能力方面。通过将骨水泥标本与人骨髓间充质干细胞(hMSCs)共培养来评估骨水泥的体外成骨活性。使用抑菌率测定法和抑菌圈检测法评估两种骨水泥对革兰氏阳性菌(金黄色葡萄球菌)和革兰氏阴性菌(铜绿假单胞菌)菌株的抑菌活性。与CPC相比,CSC能促进hMSCs的增殖和向成骨细胞分化(碱性磷酸酶和骨钙素),以及矿化结节的形成。值得注意的是,即使培养基中不含有成骨分化因子,CSC也能有效诱导hMSC分化。与CPC相比,通过抑菌圈和抑菌率显示,CSC还具有显著更强的抑菌活性。我们的研究结果表明,CSC在诱导细胞分化方面是一种用于骨修复的有用生物活性材料,可被视为CPCs的替代品。