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通过熔融长丝制造的3D打印生物活性抗菌硅酸盐玻璃陶瓷支架

3D printed bioactive and antibacterial silicate glass-ceramic scaffold by fused filament fabrication.

作者信息

Marsh Adam C, Zhang Yaozhong, Poli Lucrezia, Hammer Neal, Roch Aljoscha, Crimp Martin, Chatzistavrou Xanthippi

机构信息

Department of Chemical Engineering & Materials Science, Michigan State University, East Lansing, MI, USA.

Electrical & Computer Engineering, Michigan State University, East Lansing, MI, USA.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Jan;118:111516. doi: 10.1016/j.msec.2020.111516. Epub 2020 Sep 16.

Abstract

The fused filament fabrication (FFF) technique was applied for the first time to fabricate novel 3D printed silicate bioactive and antibacterial Ag-doped glass-ceramic (Ag-BG) scaffolds. A novel filament consisting primarily of polyolefin and Ag-BG micro-sized particles was developed and its thermal properties characterized by thermogravimetric analysis (TGA) to define the optimum heat treatment with minimal macrostructural deformation during thermal debinding and sintering. Structural characteristics of the Ag-BG scaffolds were evaluated from macro- to nanoscale using microscopic and spectroscopic techniques. The compressive strength of the Ag-BG scaffolds was found to be in the range of cancellous bone. Bioactivity of the 3D printed Ag-BG scaffolds was evaluated in vitro through immersion in simulated body fluid (SBF) and correlated to the formation of an apatite-like phase. Methicillin-resistant Staphylococcus aureus (MRSA) inoculated with the Ag-BG scaffolds exhibited a significant decrease in viability underscoring a potent anti-MRSA effect. This study demonstrates the potential of the FFF technique for the fabrication of bioactive 3D silicate scaffolds with promising characteristics for orthopedic applications.

摘要

首次应用熔融长丝制造(FFF)技术来制造新型3D打印的含银硅酸盐生物活性抗菌玻璃陶瓷(Ag-BG)支架。开发了一种主要由聚烯烃和Ag-BG微米级颗粒组成的新型长丝,并通过热重分析(TGA)对其热性能进行表征,以确定在热脱脂和烧结过程中宏观结构变形最小的最佳热处理条件。使用显微镜和光谱技术从宏观到纳米尺度评估了Ag-BG支架的结构特征。发现Ag-BG支架的抗压强度在松质骨范围内。通过浸入模拟体液(SBF)中体外评估3D打印的Ag-BG支架的生物活性,并将其与类磷灰石相的形成相关联。接种了Ag-BG支架的耐甲氧西林金黄色葡萄球菌(MRSA)的活力显著降低,突出了其强大的抗MRSA效果。这项研究证明了FFF技术在制造具有用于骨科应用的有前景特性的生物活性3D硅酸盐支架方面的潜力。

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