Development of an In Vitro Wound Healing Model For Periodontal Cells
- 1 February 2000
- journal article
- Published by Wiley in The Journal of Periodontology
- Vol. 71 (2) , 226-237
- https://doi.org/10.1902/jop.2000.71.2.226
Abstract
Background: Periodontal wound healing and regeneration are influenced by a multitude of factors. While many in vitro investigations have compared the proliferation of periodontal ligament (PDL) cells and gingival fibroblasts (GF), there are no reports directly comparing the abilities of these 2 cell types to fill a wound site. As such, the goals of this research were: 1) to develop an in vitro model of wound healing which would allow for the investigation of the biologic basis of periodontal wound healing and regeneration and 2) to compare the rates of PDL cells and GF to fill an in vitro wound site.Methods: Using both human PDL cells and GF confluent cultures, in vitro wounds were mechanically created, removing a 3 mm wide band of the cell layer. Wounded cultures were then incubated for time periods up to 12 days in media containing fetal bovine serum (FBS) concentrations (0, 0.1, 1, 5, 10, and 20%) as appropriate for each experiment. Slides were fixed, stained, and cells quantified within the wound boundaries by computer‐assisted histomorphometry. The effect of wounding a cell layer was determined by comparing wounded cells as described above with a cell layer margin created without physically disrupting the cell layer.Results: The in vitro model for periodontal wound healing established in this study showed that GF fill in the wound site at a significantly (P P P Conclusion: This in vitro model demonstrated that the characteristics of wound healing are dependent on cell type, disruption (wounding) of the cell layer, and serum concentration. In addition, this model has incorporated both proliferation and migration to provide the first direct evidence demonstrating GF has a significantly greater ability to fill a wound site than PDL cells. This in vitro model may be utilized in future investigations of the biologic basis of periodontal wound healing. J Periodontol 2000;71:226‐237.Keywords
This publication has 35 references indexed in Scilit:
- Density-dependent regulation of cell growth by contactinhibin and the contactinhibin receptorCurrent Biology, 1995
- Histologic Comparison of Regeneration in Human Intrabony Defects When Osteogenin Is Combined With Demineralized Freeze‐Dried Bone Allograft and With Purified Bovine CollagenThe Journal of Periodontology, 1991
- The Effects of Short‐Term Application of a Combination of Platelet‐Derived and Insulin‐Like Growth Factors on Periodontal Wound HealingThe Journal of Periodontology, 1991
- The root surf ace and regeneration; present therapeutic limitations and future biologic potentialsJournal of Clinical Periodontology, 1986
- Histologic Evaluation of New Attachment in Humans: A Preliminary ReportThe Journal of Periodontology, 1985
- The role of membrane-membrane interactions in the regulation of endothelial cell growth.The Journal of cell biology, 1985
- New attachment formation as the result of controlled tissue regenerationJournal of Clinical Periodontology, 1984
- New attachment following surgical treatment of human periodontal diseaseJournal of Clinical Periodontology, 1982
- The Croonian Lecture, 1978 - The crawling movement of metazoan cellsProceedings of the Royal Society of London. B. Biological Sciences, 1980
- On the Repair Potential of Periodontal TissuesThe Journal of Periodontology, 1976