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Oscillating perfusion of cell suspensions through three‐dimensional scaffolds enhances cell seeding efficiency and uniformity

Biotechnology and Bioengineering · 2003 · Vol. 84(2) · pp. 205–214
David WendtAnna MarsanoMarcel JakobM. HebererIván Martín

Abstract

We developed a bioreactor for automated cell seeding of three-dimensional scaffolds by continuous perfusion of a cell suspension through the scaffold pores in oscillating directions. Using quantitative biochemical and image analysis techniques, we then evaluated the efficiency and uniformity of perfusion seeding of Polyactive foams as compared to conventional static and spinner flask methods. Finally, we assessed the efficacy of the perfusion seeding technique for different scaffolds and cell types. Perfusion seeding of chondrocytes into Polyactive foams resulted in "viable cell seeding efficiencies," defined as the percentages of initially loaded cells that were seeded and remained viable, that were significantly higher (75 +/- 6%) than those by static (57% +/- 5%) and spinner flask seeding (55% +/- 8%). In addition, as compared to static and spinner flask methods, cells seeded by perfusion were respectively 2.6-fold and 3.8-fold more uniformly distributed and formed more homogeneously sized cell clusters. Chondrocytes seeded by perfusion into Hyaff-11 nonwoven meshes were 26% and 63%, respectively, more uniformly distributed than following static and spinner flask seeding. Bone marrow stromal cells seeded by perfusion into ChronOS porous ceramics were homogeneously distributed throughout the scaffold volume, while following the static method, cells were found only near the top surface of the ceramic. In summary, we demonstrated that our cell seeding perfusion bioreactor generated constructs with remarkably uniform cell distributions at high efficiencies, and was effective for a variety of scaffolds and different mesenchymal cell types.

Bone Tissue Engineering Materials3D Printing in Biomedical ResearchMesenchymal stem cell researchSeedingBiomedical engineeringBioreactorPerfusionMaterials scienceMesenchymal stem cellScaffoldCellSuspension (topology)Peristaltic pump

MeSH terms

AnimalsBone Marrow CellsCalcium PhosphatesCartilage, ArticularCell AdhesionCell AggregationCell CountCell DivisionCell SurvivalData Interpretation, StatisticalHumansHyaluronic AcidPolyestersPolyethylene GlycolsRheology
Citations
445
FWCI
11.78
field-weighted impact
References
38
Percentile
99%
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References
A microfabricated array bioreactor for perfused 3D liver culture
Biotechnology and Bioengineering · 2002 · 464 citations
Tissue Engineering
Science · 1993 · 9,486 citations
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