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Micro-porous PLGA/β-TCP/TPU scaffolds prepared by solvent-based 3D printing for bone tissue engineering purposes 被引量:2
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作者 Luan P.Hatt Sylvie Wirth +5 位作者 Aapo Ristaniemi Daniel J.Ciric keith thompson David Eglin Martin J.Stoddart Angela R.Armiento 《Regenerative Biomaterials》 SCIE EI CSCD 2023年第1期1538-1551,共14页
The 3D printing process of fused deposition modelling is an attractive fabrication approach to create tissue-engineered bone substitutes to regenerate large mandibular bone defects,but often lacks desired surface poro... The 3D printing process of fused deposition modelling is an attractive fabrication approach to create tissue-engineered bone substitutes to regenerate large mandibular bone defects,but often lacks desired surface porosity for enhanced protein adsorption and cell adhesion.Solvent-based printing leads to the spontaneous formation of micropores on the scaffold’s surface upon solvent removal,without the need for further post processing.Our aim is to create and characterize porous scaffolds using a new formulation composed of mechanically stable poly(lactic-co-glycol acid)and osteoconductiveβ-tricalcium phosphate with and without the addition of elastic thermoplastic polyurethane prepared by solvent-based 3D-printing technique.Large-scale regenerative scaffolds can be 3D-printed with adequate fidelity and show porosity at multiple levels analysed via micro-computer tomography,scanning electron microscopy and N_(2) sorption.Superior mechanical properties compared to a commercially available calcium phosphate ink are demonstrated in compression and screw pull out tests.Biological assessments including cell activity assay and live-dead staining prove the scaffold’s cytocompatibility.Osteoconductive properties are demonstrated by performing an osteogenic differentiation assay with primary human bone marrow mesenchymal stromal cells.We propose a versatile fabrication process to create porous 3D-printed scaffolds with adequate mechanical stability and osteoconductivity,both important characteristics for segmental mandibular bone reconstruction. 展开更多
关键词 solvent-based printing porosity regenerative scaffold OSTEOGENESIS mesenchymal stromal cells
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旧金山T2候机楼:重新定义旅行体验
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作者 谊南 Bill Hooper keith thompson 《空运商务》 2012年第1期39-40,共2页
当旧金山机场T2候机楼在2011年4月重新投入运营时,它是美国第一个获得LEED金质认证的候机楼。LEED(Leadershipin Energyand Environmental Design)是美国一个评价绿色建筑的工具,旨在设计中有效地减少环境和住户的负面影响。LEED由... 当旧金山机场T2候机楼在2011年4月重新投入运营时,它是美国第一个获得LEED金质认证的候机楼。LEED(Leadershipin Energyand Environmental Design)是美国一个评价绿色建筑的工具,旨在设计中有效地减少环境和住户的负面影响。LEED由美国绿色建筑协会建立并于2003年开始推行,在美国部分州和一些国家已被列为法定强制标准。 展开更多
关键词 候机楼 旧金山 旅行 定义 LEED 绿色建筑 负面影响 美国
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