作者
Scott Strattona, Namdev B Shelkea, Kazunori Hoshino, Swetha Rudraiahd, Sangamesh G Kumbar
发表日期
2016/12
期刊
Bioactive Materials
卷号
1
期号
2
页码范围
93-108
出版商
Elsevier
简介
A variety of engineered scaffolds have been created for tissue engineering using polymers, ceramics and their composites. Biomimicry has been adopted for majority of the three-dimensional (3D) scaffold design both in terms of physicochemical properties, as well as bioactivity for superior tissue regeneration. Scaffolds fabricated via salt leaching, particle sintering, hydrogels and lithography have been successful in promoting cell growth in vitro and tissue regeneration in vivo. Scaffold systems derived from decellularization of whole organs or tissues has been popular due to their assured biocompatibility and bioactivity. Traditional scaffold fabrication techniques often failed to create intricate structures with greater resolution, not reproducible and involved multiple steps. The 3D printing technology overcome several limitations of the traditional techniques and made it easier to adopt several thermoplastics and …
引用总数
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学术搜索中的文章
S Stratton, NB Shelke, K Hoshino, S Rudraiah… - Bioactive materials, 2016