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A bilayered tissue engineered in vitro model simulating the tooth periodontium
- Source :
- European Cells & Materials, Iss 42, Pp 232-245 (2021)
- Publication Year :
- 2021
- Publisher :
- European Cells and Materials, 2021.
-
Abstract
- Due to the complexity of the structure of the tooth periodontium, regeneration of the full tooth attachment is not a trivial task. There is also a gap in models that can represent human tooth attachment in vitro and in vivo. The aim of this study was to develop a bilayered in vitro construct that simulated the tooth periodontal ligament and attached alveolar bone, for the purpose of tissue regeneration and investigation of physiological and orthodontic loading. Two types of materials were used to develop this construct: sol-gel 60S10Mg derived scaffold, representing the hard tissue component of the periodontium, and commercially available Geistlich Bio-Gide® collagen membrane, representing the soft tissue component of the tooth attachment. Each scaffold was dynamically seeded with human periodontal ligament cells (HPDLCs). Scaffolds were either cultured separately, or combined in a bilayered construct, for 2 weeks. Characterisation of the individual scaffolds and the bilayered constructs included biological characterisation (cell viability, scanning electron microscopy to confirm cell attachment, gene expression of periodontium regeneration markers), and mechanical characterisation of scaffolds and constructs. HPDLCs enjoyed a biocompatible 3-dimensional environment within the bilayered construct components. There was no drop in cellular gene expression in the bilayered construct, compared to the separate scaffolds.
- Subjects :
- Periodontium
Scaffold
RD1-811
Periodontal Ligament
Diseases of the musculoskeletal system
stomatognathic system
Tissue engineering
Human tooth
periodontal regeneration
medicine
Humans
Periodontal fiber
Dental alveolus
in vitro models
Tissue Scaffolds
Chemistry
Regeneration (biology)
Soft tissue
stomatognathic diseases
periodontal ligament cells
medicine.anatomical_structure
RC925-935
bilayered construct
tissue engineering
Surgery
physiologic simulation
Tooth
Biomedical engineering
Subjects
Details
- ISSN :
- 14732262
- Volume :
- 42
- Database :
- OpenAIRE
- Journal :
- European Cells and Materials
- Accession number :
- edsair.doi.dedup.....6c8ecc0305cf6e01e66af57ccd917690