| Literature DB >> 26883949 |
Thafar Almela1, Ian M Brook1, Keyvan Moharamzadeh2.
Abstract
Tissue engineering of bone and oral mucosa have been extensively studied independently. The aim of this study was to develop and investigate a novel combination of bone and oral mucosa in a single 3D in vitro composite tissue mimicking the natural structure of alveolar bone with an overlying oral mucosa. Rat osteosarcoma (ROS) cells were seeded into a hydroxyapatite/tri-calcium phosphate scaffold and bone constructs were cultured in a spinner bioreactor for 3 months. An engineered oral mucosa was fabricated by air/liquid interface culture of immortalized OKF6/TERET-2 oral keratinocytes on collagen gel-embedded fibroblasts. EOM was incorporated into the engineered bone using a tissue adhesive and further cultured prior to qualitative and quantitative assessments. Presto Blue assay revealed that ROS cells remained vital throughout the experiment. The histological and scanning electron microscope examinations showed that the cells proliferated and densely populated the scaffold construct. Micro computed tomography (micro-CT) scanning revealed an increase in closed porosity and a decrease in open and total porosity at the end of the culture period. Histological examination of bone-oral mucosa model showed a relatively differentiated parakeratinized epithelium, evenly distributed fibroblasts in the connective tissue layer and widely spread ROS cells within the bone scaffold. The feasibility of fabricating a novel bone-oral mucosa model using cell lines is demonstrated. Generating human 'normal' cell-based models with further characterization is required to optimize the model for in vitro and in vivo applications.Entities:
Mesh:
Year: 2016 PMID: 26883949 PMCID: PMC4756037 DOI: 10.1007/s10856-016-5676-7
Source DB: PubMed Journal: J Mater Sci Mater Med ISSN: 0957-4530 Impact factor: 3.896
Fig. 1Histological sections of a acellular HA/TCP scaffold; b EB after one month culture; c EB after 2 months culture; and d EB at the end of three months culture. H&E staining, original magnification ×20
Fig. 2Histological sections of the engineered a bone-oral mucosa model; b epithelium; c connective tissue; and d hard tissue layers. H&E staining, original magnification ×10, ×60, ×20, ×20 respectively
Fig. 3Scanning electron micrographs of a acellular HA-TCP scaffold; b cell growth within the bone construct in the 1st month; c deposition of some calcified nodules in the 2nd month; and d mineral deposition and pores closure in the 3rd month
Micro-CT scan analysis of the HA/TCP scaffold and EB at the end of 3 months culture period
| Scaffold | EB | |
|---|---|---|
| Closed porosity % | 0.02 | 0.06 |
| Volume of closed pores (mm3) | 0.04 | 0.17 |
| Bone surface density (1/mm) | 15.56 | 20.16 |
| Surface of closed pores (mm2) | 9.08 | 31.65 |
| Open porosity % | 67.38 | 55.33 |
| Total porosity % | 67.39 | 55.36 |
| Volume of open pore space (mm3) | 422.53 | 326.81 |
| Total volume of pore space (mm3) | 422.57 | 326.98 |
| Connectivity density (1/mm3) | 390.18 | 784.66 |
| Number of closed pores | 4959.00 | 11,587.00 |
| Connectivity | 244,651.00 | 463,434.00 |