In vitro studies on periodontal ligament cells and enamel matrix derivative
- 1 September 1997
- journal article
- Published by Wiley in Journal of Clinical Periodontology
- Vol. 24 (9) , 685-692
- https://doi.org/10.1111/j.1600-051x.1997.tb00250.x
Abstract
The recognition that periodontal regeneration can be achieved has resulted in increased efforts focused on understanding the mechanisms and factors required for restoring periodontal tissues so that clinical outcomes of such therapies are more predictable than those currently being used. In vitro models provide an excellent procedure for providing clues as to the mechanisms that may be required for regeneration of tissues. The investigations here were targeted at determining the ability of enamel matrix derivative (EMD) to influence specific properties of periodontal ligament cells in vitro. Properties of cells examined included migration, attachment, proliferation, biosynthetic activity and mineral nodule formation. Immunoassays were done to determine whether or not EMD retained known polypeptide factors. Results demonstrated that EMD under in vitro conditions formed protein aggregates, thereby providing a unique environment for cell‐matrix interaction. Under these conditions, EMD: (a) enhanced proliferation of PDL cells, but not of epithelial cells; (b) increased total protein production by PDL cells; (c) promoted mineral nodule formation of PDL cells, as assayed by von Kossa staining; (d) had no significant effect on migration or attachment and spreading of cells within the limits of the assay systems used here. Next, EMD was screened for possible presence of specific molecules including: GM‐CSF, calbindin D, EOF, fibronectin, bFGF, γ‐interferon. IL‐1β, 2, 3, 6; IGF‐1,2; NGF, PDGF, TNF, TGFβ. With immunoassays used, none of these molecules were identified in EMD. These in vitro studies support the concept that EMD can act as a positive matrix for cells at a regenerative site.Keywords
This publication has 27 references indexed in Scilit:
- Localization and Expression of Osteopontin in Mineralized and Nonmineralized Tissues of the PeriodontiumaAnnals of the New York Academy of Sciences, 1995
- Identification of BMP-4 as a signal mediating secondary induction between epithelial and mesenchymal tissues during early tooth developmentCell, 1993
- Human Periodontal Cells Initiate Mineral‐Like Nodules In VitroThe Journal of Periodontology, 1991
- Effects of minocycline on fibroblast attachment and spreadingJournal of Periodontal Research, 1988
- Protein production by human gingival fibroblasts is enhanced by guanidine EDTA extracts of cementumJournal of Periodontal Research, 1987
- Regulation of the attachment and migration of bone cells in vitroJournal of Periodontal Research, 1982
- Towards a Cellular and Molecular Understanding of Periodontics: Cementogenesis RevisitedThe Journal of Periodontology, 1976
- Use of a mixture of proteinase-free collagenases for the specific assay of radioactive collagen in the presence of other proteinsBiochemistry, 1971
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970