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  4. Induction of osteogenic differentiation of bone marrow stromal cells on 3D polyester-based scaffolds solely by subphysiological fluidic stimulation in a laminar flow bioreactor
 
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2021
Journal Article
Title

Induction of osteogenic differentiation of bone marrow stromal cells on 3D polyester-based scaffolds solely by subphysiological fluidic stimulation in a laminar flow bioreactor

Abstract
The fatal determination of bone marrow mesenchymal stem/stromal cells (BMSC) is closely associated with mechanoenvironmental factors in addition to biochemical clues. The aim of this study was to induce osteogenesis in the absence of chemical stimuli using a custom-designed laminar flow bioreactor. BMSC were seeded onto synthetic microporous scaffolds and subjected to the subphysiological level of fluid flow for up to 21 days. During the perfusion, cell proliferation was significantly inhibited. There were also morphological changes, with F-actin polymerisation and upregulation of ROCK1. Notably, in BMSC subjected to flow, mRNA expression of osteogenic markers was significantly upregulated and RUNX2 was localised in the nuclei. Further, under perfusion, there was greater deposition of collagen type 1 and calcium onto the scaffolds. The results confirm that an appropriate level of fluid stimuli preconditions BMSC towards the osteoblastic lineage on 3D scaffolds in the absence of chemical stimulation, which highlights the utility of flow bioreactors in bone tissue engineering.
Author(s)
Yamada, Shuntaro
Department of Clinical Dentistry, Faculty of Medicine - Tissue engineering group, University of Bergen, Bergen, Norway
Yassin, Mohammed Ahmed
Department of Clinical Dentistry, Faculty of Medicine - Tissue engineering group, University of Bergen, Bergen, Norway
Schwarz, Thomas  
Fraunhofer-Institut für Silicatforschung ISC  
Hansmann, Jan  
Fraunhofer-Institut für Silicatforschung ISC  
Mustafa, Kamal
Department of Clinical Dentistry, Faculty of Medicine - Tissue engineering group, University of Bergen, Bergen, Norway
Journal
Journal of tissue engineering : JTE  
Open Access
DOI
10.1177/20417314211019375
Language
English
Fraunhofer-Institut für Silicatforschung ISC  
Keyword(s)
  • bone tissue engineering

  • bioreactor

  • lamina flow

  • dynamic cell culture

  • osteogenic differentiation

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