Literature DB >> 14670107

Effects of medium perfusion rate on cell-seeded three-dimensional bone constructs in vitro.

Sarah H Cartmell1, Blaise D Porter, Andrés J García, Robert E Guldberg.   

Abstract

Cellular activity at the center of tissue-engineered constructs in static culture is typically decreased relative to the construct periphery because of transport limitations. We have designed a tissue culture system that perfuses culture medium through three-dimensional (3D) porous cellular constructs to improve nutrient delivery and waste removal within the constructs. This study examined the effects of medium perfusion rate on cell viability, proliferation, and gene expression within cell-seeded 3D bone scaffolds. Human trabecular bone scaffolds were seeded with MC3T3-E1 osteoblast-like cells and perfused for 1 week at flow rates of 0.01, 0.1, 0.2, and 1.0 mL/min. Confocal microscopy after 1 week of culture indicated that a flow rate of 1.0 mL/min resulted in substantial cell death throughout the constructs whereas lowering the flow rate led to an increasing proportion of viable cells, particularly at the center of the constructs. DNA analysis showed increases in cell proliferation at a flow rate of 0.01 mL/min relative to 0.2 mL/min and static controls. Conversely, mRNA expressions of Runx2, osteocalcin, and alkaline phosphatase were upregulated at 0.2 mL/min compared with lower flow rates as quantified by real-time RT-PCR. These data suggest that medium perfusion may benefit the development of 3-D tissues in vitro by enhancing transport of nutrients and waste within the constructs and providing flow-mediated mechanical stimuli.

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Year:  2003        PMID: 14670107     DOI: 10.1089/10763270360728107

Source DB:  PubMed          Journal:  Tissue Eng        ISSN: 1076-3279


  75 in total

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5.  Computational modeling of adherent cell growth in a hollow-fiber membrane bioreactor for large-scale 3-D bone tissue engineering.

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6.  Effect of pulse frequency on the osteogenic differentiation of mesenchymal stem cells in a pulsatile perfusion bioreactor.

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7.  Stimulation of osteoblasts using rest periods during bioreactor culture on collagen-glycosaminoglycan scaffolds.

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8.  Cardiac tissue engineering using perfusion bioreactor systems.

Authors:  Milica Radisic; Anna Marsano; Robert Maidhof; Yadong Wang; Gordana Vunjak-Novakovic
Journal:  Nat Protoc       Date:  2008       Impact factor: 13.491

9.  Osteogenic activity of MG63 cells on bone-like hydroxyapatite/collagen nanocomposite sponges.

Authors:  Teruaki Yoshida; Masanori Kikuchi; Yoshihisa Koyama; Kazuo Takakuda
Journal:  J Mater Sci Mater Med       Date:  2009-11-19       Impact factor: 3.896

10.  Doppler optical microangiography improves the quantification of local fluid flow and shear stress within 3-D porous constructs.

Authors:  Yali Jia; Lin An; Ruikang K Wang
Journal:  J Biomed Opt       Date:  2009 Sep-Oct       Impact factor: 3.170

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