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Effect of cell seeding concentration on the quality of tissue engineered constructs loaded with adult human articular chondrocytes

Concaro, Sebastian ; Nicklasson, Elin ; Ellowsson, Linda LU ; Lindahl, Anders ; Brittberg, Mats and Gatenholm, Paul (2008) In Journal of Tissue Engineering and Regenerative Medicine 2(1). p.14-21
Abstract

Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) scaffolds need to be further investigated. Chitosan scaffolds were produced by freeze-drying 3% w/v 90% DDA chitosan gels. The effect of the cell seeding concentration was evaluated by culturing human adult chondrocytes in chitosan scaffolds After the first passage, cells were seeded into chitosan scaffolds with a diameter of 8 mm. The final cell seeding concentration per cm3 of chitosan scaffold was: Group A, 3 x 10(6); Group B, 6 x 10(6); Group C, 12 x 10(6); and Group D, 25 x 10(6) cells. After 14 and 28 days in 3D culture, the constructs were assesed for collagen, glucosaminoglycans and DNA content. The mechanical properties of the... (More)

Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) scaffolds need to be further investigated. Chitosan scaffolds were produced by freeze-drying 3% w/v 90% DDA chitosan gels. The effect of the cell seeding concentration was evaluated by culturing human adult chondrocytes in chitosan scaffolds After the first passage, cells were seeded into chitosan scaffolds with a diameter of 8 mm. The final cell seeding concentration per cm3 of chitosan scaffold was: Group A, 3 x 10(6); Group B, 6 x 10(6); Group C, 12 x 10(6); and Group D, 25 x 10(6) cells. After 14 and 28 days in 3D culture, the constructs were assesed for collagen, glucosaminoglycans and DNA content. The mechanical properties of the constructs were determined using a dynamic oscillatory shear test. The histological aspect of the constructs was evaluated using the Bern score. The collagen and GAG concentration increased, varying the cell seeding concentration. There was a significant increase in proteoglycan and hydroxyproline production between groups C and D. The sulphated GAG content increased significantly in the group D as compared to the other groups. The mechanical properties of the different constructs increased over time, from 9.6 G'/kPa at 14 days of 3D culture to 14.6 G'/kPa at 28 days under the same culture conditions. In this study we were able to determine that concentrations of 12-25 million cells/cm2 are needed to increase the matrix production and mechanical properties of human adult chondrocytes under static conditions.

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author
; ; ; ; and
publishing date
type
Contribution to journal
publication status
published
keywords
Adult, Cartilage, Articular/cytology, Cell Culture Techniques/methods, Cells, Cultured, Chitosan/metabolism, Chondrocytes/cytology, Humans, Microscopy, Electron, Scanning, Porosity, Stress, Mechanical, Tissue Engineering/methods
in
Journal of Tissue Engineering and Regenerative Medicine
volume
2
issue
1
pages
14 - 21
publisher
John Wiley & Sons Inc.
external identifiers
  • scopus:53149115295
  • pmid:18265427
ISSN
1932-6254
DOI
10.1002/term.60
language
English
LU publication?
no
additional info
Copyright (c) 2008 John Wiley & Sons, Ltd.
id
06b3a979-735b-4d1d-aa8c-3978f55dd9ff
date added to LUP
2022-08-31 14:51:46
date last changed
2024-01-14 16:23:32
@article{06b3a979-735b-4d1d-aa8c-3978f55dd9ff,
  abstract     = {{<p>Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) scaffolds need to be further investigated. Chitosan scaffolds were produced by freeze-drying 3% w/v 90% DDA chitosan gels. The effect of the cell seeding concentration was evaluated by culturing human adult chondrocytes in chitosan scaffolds After the first passage, cells were seeded into chitosan scaffolds with a diameter of 8 mm. The final cell seeding concentration per cm3 of chitosan scaffold was: Group A, 3 x 10(6); Group B, 6 x 10(6); Group C, 12 x 10(6); and Group D, 25 x 10(6) cells. After 14 and 28 days in 3D culture, the constructs were assesed for collagen, glucosaminoglycans and DNA content. The mechanical properties of the constructs were determined using a dynamic oscillatory shear test. The histological aspect of the constructs was evaluated using the Bern score. The collagen and GAG concentration increased, varying the cell seeding concentration. There was a significant increase in proteoglycan and hydroxyproline production between groups C and D. The sulphated GAG content increased significantly in the group D as compared to the other groups. The mechanical properties of the different constructs increased over time, from 9.6 G'/kPa at 14 days of 3D culture to 14.6 G'/kPa at 28 days under the same culture conditions. In this study we were able to determine that concentrations of 12-25 million cells/cm2 are needed to increase the matrix production and mechanical properties of human adult chondrocytes under static conditions.</p>}},
  author       = {{Concaro, Sebastian and Nicklasson, Elin and Ellowsson, Linda and Lindahl, Anders and Brittberg, Mats and Gatenholm, Paul}},
  issn         = {{1932-6254}},
  keywords     = {{Adult; Cartilage, Articular/cytology; Cell Culture Techniques/methods; Cells, Cultured; Chitosan/metabolism; Chondrocytes/cytology; Humans; Microscopy, Electron, Scanning; Porosity; Stress, Mechanical; Tissue Engineering/methods}},
  language     = {{eng}},
  number       = {{1}},
  pages        = {{14--21}},
  publisher    = {{John Wiley & Sons Inc.}},
  series       = {{Journal of Tissue Engineering and Regenerative Medicine}},
  title        = {{Effect of cell seeding concentration on the quality of tissue engineered constructs loaded with adult human articular chondrocytes}},
  url          = {{http://dx.doi.org/10.1002/term.60}},
  doi          = {{10.1002/term.60}},
  volume       = {{2}},
  year         = {{2008}},
}