Wu Chengtie, Han Pingping, Xu Mengchi, Zhang Xufang, Zhou Yinghong, Xue Guangda, Chang Jiang, Xiao Yin
State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, People's Republic of China.
J Mater Chem B. 2013 Feb 14;1(6):876-885. doi: 10.1039/c2tb00391k. Epub 2013 Jan 2.
Bioactive materials with osteostimulation properties are of great importance to promote osteogenic differentiation of human bone marrow stromal cells (hBMSCs) for potential bone regeneration. We have recently synthesized nagelschmidtite (NAGEL, CaSiPO) ceramic powders which showed excellent apatite-mineralization ability. The aim of this study was to investigate the interaction of hBMSCs with NAGEL bioceramic bulks and their ionic extracts, and to explore the osteostimulation properties of NAGEL bioceramics and the possible molecular mechanism. The cell attachment, proliferation, bone-related gene expression (ALP, OPN and OCN) and WNT signalling pathways (WNT3a, FZD6, AXIN2 and CTNNB) of hBMSCs cultured on NAGEL bioceramic disks were systematically studied. We further investigated the biological effects of ionic products from NAGEL powders on cell proliferation and osteogenic differentiation of hBMSCs by culturing cells with NAGEL extracts. Furthermore, the effect of NAGEL bioceramics on the osteogenic differentiation in hBMSCs was also investigated with the addition of cardamonin, a WNT inhibitor. The results showed that NAGEL bioceramic disks supported the attachment and proliferation of hBMSCs, and significantly enhanced the bone-related gene expression and WNT signalling pathway of hBMSCs, compared to conventional beta-tricalcium phosphate (β-TCP) bioceramic disks and blank controls. The ionic products from NAGEL powders also significantly promoted the proliferation, bone and WNT-related gene expression of hBMSCs. It was also identified that NAGEL bioceramics could bypass the action of the WNT inhibitor (10 μM) to stimulate the selected osteogenic genes in hBMSCs. Our results suggest that NAGEL bioceramics possess excellent in vitro osteostimulation properties. The possible mechanism for the osteostimulation may be directly related to the released Si, Ca and P-containing ionic products from NAGEL bioceramics which activate bone-related gene expression and WNT signalling pathway of hBMSCs. The present study suggests that NAGEL bioceramics are a potential bone regeneration material with significant osteostimulation capacity.
具有骨刺激特性的生物活性材料对于促进人骨髓基质细胞(hBMSCs)的成骨分化以实现潜在的骨再生具有重要意义。我们最近合成了纳盖尔施密特矿(NAGEL,CaSiPO)陶瓷粉末,其显示出优异的磷灰石矿化能力。本研究的目的是研究hBMSCs与NAGEL生物陶瓷块及其离子提取物之间的相互作用,并探索NAGEL生物陶瓷的骨刺激特性和可能的分子机制。系统研究了在NAGEL生物陶瓷盘上培养的hBMSCs的细胞附着、增殖、骨相关基因表达(碱性磷酸酶、骨桥蛋白和骨钙素)和WNT信号通路(WNT3a、FZD6、AXIN2和CTNNB)。我们通过用NAGEL提取物培养细胞,进一步研究了NAGEL粉末的离子产物对hBMSCs细胞增殖和成骨分化的生物学效应。此外,还添加了WNT抑制剂小豆蔻明,研究了NAGEL生物陶瓷对hBMSCs成骨分化的影响。结果表明,与传统的β-磷酸三钙(β-TCP)生物陶瓷盘和空白对照相比,NAGEL生物陶瓷盘支持hBMSCs的附着和增殖,并显著增强了hBMSCs的骨相关基因表达和WNT信号通路。NAGEL粉末的离子产物也显著促进了hBMSCs的增殖、骨和WNT相关基因表达。还发现NAGEL生物陶瓷可以绕过WNT抑制剂(10μM)的作用,刺激hBMSCs中选定的成骨基因。我们的结果表明,NAGEL生物陶瓷具有优异的体外骨刺激特性。骨刺激的可能机制可能与NAGEL生物陶瓷释放的含Si、Ca和P的离子产物直接相关,这些离子产物激活了hBMSCs的骨相关基因表达和WNT信号通路。本研究表明,NAGEL生物陶瓷是一种具有显著骨刺激能力的潜在骨再生材料。