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基于扫描探针显微镜的纳米技术
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作者 薛其坤 《科技和产业》 2002年第1期58-62,共5页
中国科协主办的青年科学家论坛第45期的主题是"纳米水平上的科学与技术".三个专题是"量子低维结构的表面与界面科学"、"半导体、金属、有机和生物分子的纳米结构的形成与控制"以及"相关的理论模拟... 中国科协主办的青年科学家论坛第45期的主题是"纳米水平上的科学与技术".三个专题是"量子低维结构的表面与界面科学"、"半导体、金属、有机和生物分子的纳米结构的形成与控制"以及"相关的理论模拟与计算".来自17所高等院校及科研单位的22位海内外青年专家和学者参加了本次活动. 展开更多
关键词 扫描探针显微镜 纳米技术 应用领域 材料制备 材料生长技术
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Three-dimensional printing of β-tricalcium phosphate/calcium silicate composite scaffolds for bone tissue engineering 被引量:3
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作者 Yifan Dong Haibo Duan +3 位作者 Naru Zhao Xiao Liu Yijuan Ma Xuetao Shi 《Bio-Design and Manufacturing》 2018年第2期146-156,共11页
Bioactive scaffolds with interconnected porous structures are essential for guiding cell growth and new bone formation. In this work, we successfully fabricated three-dimensional (3D) porous β-tricalcium phosphate... Bioactive scaffolds with interconnected porous structures are essential for guiding cell growth and new bone formation. In this work, we successfully fabricated three-dimensional (3D) porous β-tricalcium phosphate (β-TCP)/calcium silicate (CS) composite scaffolds with different ratios by 3D printing technique and further investigated the physiochemical properties, in vitro apatite mineralization properties and degradability of porous β-TCP/CS scaffolds. Moreover, a series of in vitro cell experiments including the attachment, proliferation and osteogenic differentiation of mouse bone marrow stromal cells were conducted to testify their biological performances. The results showed that 3D printed β-TCP/CS scaffolds possessed of controllable internal porous structures and external shape. Furthermore, the introduction of CS decreased the shrinkage of scaffolds and improved the in vitro apatite formation activity and degradation rate. Meanwhile, compared with pure β- TCP scaffold, the β-TCP/CS composite scaffolds were more conducive to promote cell adhesion, spread and osteogenesis differentiation. However, when the content of CS was increased to 45%, the ions dissolution rate of the composite scaffolds was so high that leaded to the increase in pH value, which inhibited the proliferation of cells. Our results suggested that the introduction of appropriate CS into β-TCP bioceramic is an effective strategy to prepare bioactive 3D printed bioceramic scaffolds for hard tissue regeneration. 展开更多
关键词 3D printing β-Tricalcium phosphate/calcium silicate Osteogenesis differentiation Tissue regeneration
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