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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Additive Manufacturing of Carbon Nanotube Reinforced Bioactive Glass Scaffolds for Bone Tissue Engineering
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Additive Manufacturing of Carbon Nanotube Reinforced Bioactive Glass Scaffolds for Bone Tissue Engineering

机译:加法制造碳纳米管强化生物活性玻璃支架的骨头组织工程

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Scaffolds play an essential role in bone healing by providing temporary structural support to the native bone tissue and by hosting bone cells. To this end, several biomaterials and manufacturing methods have been proposed. Among the biomaterials, bio-active glasses have attractive properties as a scaffold material for bone repair. Simultaneously, additive manufacturing (AM) techniques have attracted significant attention owing to their capability of fabricating complex and patient-specific scaffolds. Accordingly, boro-silicate bio-active glass (BG-B30) has been used to fabricate the scaffolds using an extrusion-based AM devices in this study. Pluronic F-127 was used as an ink carrier that showed suitable shear thinning behavior for fabrication. The pure BG-B30 scaffold had a compressive strength of 23.30 MPa and was reinforced further with functionalized multi-walled carbon nanotube (MWCNT-COOH) to reduce its brittleness and enhance its compressive strength. When compared to the conventional polymer foam replication technique, the combination of MWCNT-COOH reinforcement and AM resulted in an enhancement of the compressive strength by ~646% (1.05 MPa to 35.84 MPa). Further, structural analysis using microcomputed tomography revealed that the scaffolds fabricated using AM had better control over strut size and pore size in addition to better network connectivity. Finally, in vitro experiments demonstrated its bio-active behavior by the formation of hydroxy apatite, and the cellular studies revealed good cell viability and osteogenesis initiation. These results are promising for the fabrication of patient-specific CNT-reinforced bio-active glass porous scaffolds for bone tissue engineering applications.
机译:支架在骨愈合起着关键作用通过提供临时支撑结构本机骨组织和宿主骨细胞。这个目的,一些生物材料和制造提出了方法。生物材料,生物活性玻璃有吸引力属性作为骨支架材料修复。(我)技术吸引了重要由于他们的能力的关注制作复杂,针对病人的支架。玻璃(BG-B30)已经被用来制造使用一个extrusion-based设备支架本研究。载体显示合适的剪切稀化为制造行为。支架的抗压强度为23.30 MPa进一步加强与功能化多壁碳纳米管(MWCNT-COOH)降低其脆性和提高抗压强度。传统的聚合物泡沫复制技术,MWCNT-COOH强化和组合我导致了增强抗压强度646% ~ 35.84 MPa) (1.05 MPa。此外,使用microcomputed结构分析断层扫描显示支架编造的使用是最好的控制杆和大小孔隙大小除了更好的网络连通性。展示了其生物活性的行为羟基磷灰石的形成和细胞研究显示良好的细胞生存能力骨生成起始。希望制造的患者CNT-reinforced生物活性玻璃多孔支架骨组织工程应用。

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