Department of Stomatology, Zhongshan Hospital, Fudan University, Shanghai, 200032, China.
Institute of Photonic Technologies, Friedrich-Alexander-Universität Erlangen-Nürnberg, Konrad-Zuse-Str. 3/5, D-91052 Erlangen, Germany.
Sci Rep. 2017 Mar 28;7:45360. doi: 10.1038/srep45360.
Fabricating Ti alloy based dental implants with defined porous scaffold structure is a promising strategy for improving the osteoinduction of implants. In this study, we use Laser Beam Melting (LBM) 3D printing technique to fabricate porous Ti6Al4V dental implant prototypes with three controlled pore sizes (200, 350 and 500 μm). The mechanical stress distribution in the surrounding bone tissue is characterized by photoelastography and associated finite element simulation. For in-vitro studies, experiments on implants' biocompatibility and osteogenic capability are conducted to evaluate the cellular response correlated to the porous structure. As the preliminary results, porous structured implants show a lower stress-shielding to the surrounding bone at the implant neck and a more densed distribution at the bottom site compared to the reference implant. From the cell proliferation tests and the immunofluorescence images, 350 and 500 μm pore sized implants demonstrate a better biocompatibility in terms of cell growth, migration and adhesion. Osteogenic genes expression of the 350 μm group is significantly increased alone with the ALP activity test. All these suggest that a pore size of 350 μm provides an optimal provides an optimal potential for improving the mechanical shielding to the surrounding bones and osteoinduction of the implant itself.
采用特定多孔支架结构的钛合金基牙科植入物的制造是提高植入物成骨诱导能力的一种很有前途的策略。在这项研究中,我们使用激光束熔化(LBM)3D 打印技术制造了具有三种受控孔径(200、350 和 500μm)的多孔 Ti6Al4V 牙科植入物原型。通过光弹法和相关的有限元模拟来表征周围骨组织中的机械应力分布。对于体外研究,我们进行了植入物生物相容性和成骨能力的实验,以评估与多孔结构相关的细胞反应。作为初步结果,与参考植入物相比,多孔结构植入物在植入物颈部周围的骨组织中表现出较低的应力屏蔽作用,在底部区域表现出更密集的分布。从细胞增殖试验和免疫荧光图像来看,350μm 和 500μm 孔径的植入物在细胞生长、迁移和黏附方面表现出更好的生物相容性。350μm 组的成骨基因表达伴随着碱性磷酸酶(ALP)活性测试显著增加。所有这些都表明,350μm 的孔径为改善周围骨骼的机械屏蔽和植入物本身的成骨诱导能力提供了最佳的潜力。