4.8 Article

Bone grafts engineered from human adipose-derived stem cells in dynamic 3D-environments

Journal

BIOMATERIALS
Volume 34, Issue 4, Pages 1004-1017

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2012.10.051

Keywords

Tissue engineering; Adipose tissue derived stem cell; Microcarrier; Scaffold; Top-down; Bottom-up

Funding

  1. UGhent, Belgium [IV1-I/0002/03]

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Modular tissue engineering (TE) is a promising alternative to overcome the limits in traditional TE. In the present study, adipose tissue derived stem cells (ADSC)-laden microcarriers are used as building blocks (microtissues) that self-assemble into macrotissues in a bottom-up approach. These bone grafts were compared with a classical top-down approach (scaffolds). This concept was compared with bone marrow derived stem cells (BMSC) as cell source. Cells were immunophenotypically analyzed, followed by 2D/3D osteogenic differentiation in static/dynamic conditions. The bone graft quality was evaluated by (immuno) histochemistry and gene expression. After 6 weeks of dynamic culturing, scaffolds were highly colonized although not in the center and the osteogenic gene expression was higher in contrast to static cultures. A cell-to-microcarrier ratio of 5 x 10(6) cells-0.09 g microcarriers leaded to aggregate formation resulting in microtissues with subsequent macrotissue formation. ADSC/BMSC on scaffolds showed a downregulation of Runx2 and collagen I, demonstrating the end-stage, in contrary to microcarriers, where an upregulation of Runx2, collagen I together with BSP and osteocalcin was observed. This paper showed that high quality bone grafts (2 cm(3)) can be engineered in a bottom-up approach with cell-laden microcarriers. (C) 2012 Elsevier Ltd. All rights reserved.

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