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首页> 外文期刊>Journal of the European Ceramic Society >3D printing magnesium-doped wollastonite/beta-TCP bioceramics scaffolds with high strength and adjustable degradation
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3D printing magnesium-doped wollastonite/beta-TCP bioceramics scaffolds with high strength and adjustable degradation

机译:具有高强度和可调节降解能力的3D打印镁掺杂硅灰石/β-TCP生物陶瓷支架

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Mechanical strength of bioceramic scaffolds is a problem to treat the load bearing bone defects. We developed the Mg-doping wollastonite (CSi-Mg)-based scaffolds with high strength via 3D printing technology. The effect of pore size, beta-tricalcium phosphate (beta-TCP) content (x%), and heating schedule on the strength of scaffolds were investigated systematically. Incorporation of beta-TCP could readily adjust the sintering properties of the CSi-Mg scaffolds and the scaffolds with high (20-30%) and low (10-20%) beta-TCP possess much high strength (80-100 MPa or 120-140 MPa) after undergoing one- or two-step sintering. Meanwhile, the CSi-Mg/TCPx (x=10, 20) with medium-pore (similar to 320 mu m) had over 100 MPa in compression and similar to 52% in porosity. In particular, the composite scaffolds maintained appreciable strength (over 50 MPa) after immersion in Tris buffer for a long time stage (6 weeks). These findings demonstrate that the CSi-Mg/TCPx scaffolds are promising for treating some challengeable bone defects, especially for load-bearing bone repair. (C) 2016 Elsevier Ltd. All rights reserved.
机译:生物陶瓷支架的机械强度是治疗承载骨缺损的问题。我们通过3D打印技术开发了具有高强度的掺Mg硅灰石(CSi-Mg)基支架。系统地研究了孔径,β-磷酸三钙(β-TCP)含量(x%)和加热程序对支架强度的影响。掺入β-TCP可以很容易地调整CSi-Mg支架的烧结性能,具有高(20-30%)和低(10-20%)β-TCP的支架具有很高的强度(80-100 MPa或120) -140 MPa)进行一或两步烧结后。同时,具有中孔(约320μm)的CSi-Mg / TCPx(x = 10、20)具有超过100MPa的压缩率和约52%的孔隙率。尤其是,复合支架在长时间(6周)内浸入Tris缓冲液后,仍保持了相当的强度(超过50 MPa)。这些发现表明,CSi-Mg / TCPx支架有望用于治疗一些具有挑战性的骨缺损,尤其是用于承重骨修复。 (C)2016 Elsevier Ltd.保留所有权利。

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