作者
Gregory N Bancroft, Vassilios I Sikavitsas, Juliette Van Den Dolder, Tiffany L Sheffield, Catherine G Ambrose, John A Jansen, Antonios G Mikos
发表日期
2002/10/1
期刊
Proceedings of the National Academy of Sciences
卷号
99
期号
20
页码范围
12600-12605
出版商
The National Academy of Sciences
简介
Bone is a complex highly structured mechanically active 3D tissue composed of cellular and matrix elements. The true biological environment of a bone cell is thus derived from a dynamic interaction between responsively active cells experiencing mechanical forces and a continuously changing 3D matrix architecture. To investigate this phenomenon in vitro, marrow stromal osteoblasts were cultured on 3D scaffolds under flow perfusion with different rates of flow for an extended period to permit osteoblast differentiation and significant matrix production and mineralization. With all flow conditions, mineralized matrix production was dramatically increased over statically cultured constructs with the total calcium content of the cultured scaffolds increasing with increasing flow rate. Flow perfusion induced de novo tissue modeling with the formation of pore-like structures in the scaffolds and enhanced the distribution of …
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