Ding Shinn-Jyh, Chu Ying-Hung, Chen Pei-Tung
Institute of Oral Science, Chung Shan Medical University, Taichung 402, Taiwan.
Department of Stomatology, Chung Shan Medical University Hospital, Taichung 402, Taiwan.
ACS Omega. 2021 Mar 4;6(10):7106-7118. doi: 10.1021/acsomega.1c00097. eCollection 2021 Mar 16.
Zirconia ceramics with high mechanical properties have been used as a load-bearing implant in the dental and orthopedic surgery. However, poor bone bonding properties and high elastic modulus remain a challenge. Calcium silicate (CaSi)-based ceramic can foster osteoblast adhesion, growth, and differentiation and facilitate bone ingrowth. This study was to prepare CaSi-ZrO composites and evaluate their mechanical properties, long-term stability, in vitro osteogenic activity, and antibacterial ability. The () and () bacteria and human mesenchymal stem cells (hMSCs) were used to evaluate the antibacterial and osteogenic activities of implants in vitro, respectively. Results indicated that the three-point bending strength of ZrO was 486 MPa and Young's modulus was 128 GPa, which were much higher than those of the cortical bone. In contrast, the bending strength and modulus of 20% (201 MPa and 48 GPa, respectively) and 30% CaSi (126 MPa and 20 GPa, respectively) composites were close to the reported strength and modulus of the cortical bone. As expected, higher CaSi content implants significantly enhanced cell growth, differentiation, and mineralization of hMSCs. It is interesting to note the induction ability of CaSi in osteogenic differentiation of hMSCs even when cultured in the absence of an osteogenic differentiation medium. The composite with the higher CaSi contents exhibited the greater bacteriostatic effect against and . In conclusion, the addition of 20 wt % CaSi can effectively improve the mechanical biocompatibility, osteogenesis, and antibacterial activity of ZrO ceramics, which may be a potential choice for load-bearing applications.
具有高机械性能的氧化锆陶瓷已被用作牙科和骨科手术中的承重植入物。然而,较差的骨结合性能和高弹性模量仍然是一个挑战。硅酸钙(CaSi)基陶瓷可以促进成骨细胞的粘附、生长和分化,并促进骨长入。本研究旨在制备CaSi-ZrO复合材料,并评估其机械性能、长期稳定性、体外成骨活性和抗菌能力。分别使用()和()细菌以及人间充质干细胞(hMSCs)来评估植入物的体外抗菌和成骨活性。结果表明,ZrO的三点弯曲强度为486 MPa,杨氏模量为128 GPa,远高于皮质骨。相比之下,20%(分别为201 MPa和48 GPa)和30% CaSi(分别为126 MPa和20 GPa)复合材料的弯曲强度和模量接近报道的皮质骨强度和模量。正如预期的那样,较高CaSi含量的植入物显著增强了hMSCs的细胞生长、分化和矿化。有趣的是,即使在没有成骨分化培养基的情况下培养,CaSi对hMSCs成骨分化也具有诱导能力。具有较高CaSi含量的复合材料对()和()表现出更大的抑菌作用。总之,添加20 wt%的CaSi可以有效改善ZrO陶瓷的机械生物相容性、成骨能力和抗菌活性,这可能是承重应用的一个潜在选择。