## Abstract The purpose of this study was to evaluate the effects of three different desensitizers on the cell viability and morphology of human gingival fibroblasts (HGF). Human gingival tissues were obtained from individuals who have clinically, healthy periodontium. HGF were grown at 37Β°C in hum
Effect of TEGDMA on the intracellular glutathione concentration of human gingival fibroblasts
β Scribed by Engelmann, J. ;Leyhausen, G. ;Leibfritz, D. ;Geurtsen, W.
- Publisher
- John Wiley and Sons
- Year
- 2002
- Tongue
- English
- Weight
- 121 KB
- Volume
- 63
- Category
- Article
- ISSN
- 0021-9304
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β¦ Synopsis
Abstract
Previous studies revealed that primarily small and relatively hydrophilic comonomers, such as TEGDMA, leach out of resinβbased restorative materials into aqueous media. Subsequently, these compounds may cause detrimental reactions with intracellular metabolic systems. The present experiments attempted to elucidate the interactions of TEGDMA with the important intracellular reducing agent glutathione (GSH). The influence of various concentrations of TEGDMA (0.5β7.5 mM) on viability and intracellular GSH concentration of primary human gingival fibroblasts was determined by means of a fluorescence assay (monobromobimane) performed in microtiter plates. Cells were treated with TEDGMA between 2 and 24 h. The incubation of fibroblasts with TEGDMA even at subtoxic concentrations quickly decreased the intracellular glutathione level to 30β50% of controls within the first 2β6 hours. However, no simultaneous adverse effect on cell viability was found. Longer incubation periods up to 24 h caused a regulatory reincrease at TEGDMA concentrations β€ 2.5 mM, whereas higher concentrations resulted in a continuous depletion of glutathione concentration concomitant with a significant decrease of cell viability. Because glutathione plays an important role in protection and detoxification processes as well in the regulation of cell death, the early and extensive depletion of the intracellular glutathione pool due to TEGDMA may significantly contribute to the cytotoxic potency of this compound. Β© 2002 Wiley Periodicals, Inc. J Biomed Mater Res (Appl Biomater) 63: 746β751, 2002
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