Evaluation of a natural resin-based new material (Shellac F) as a potential desensitizing agent

Abstract Objectives To evaluate the cytotoxicity of Shellac F, a new fluoride varnish, and its effects on human dentin hydraulic conductance. Methods Shellac F was compared to another fluoride varnish (Duraphat® ) and a fluoride containing desensitizing agent (Isodan® ). The cytotoxicity test was pe...

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Veröffentlicht in:Dental materials 2008-07, Vol.24 (7), p.1001-1007
Hauptverfasser: Hoang-Dao, Bao-Tram, Hoang-Tu, Hung, Tran-Hung, Lam, Camps, Jean, Koubi, Gilles, About, Imad
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Sprache:eng
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Zusammenfassung:Abstract Objectives To evaluate the cytotoxicity of Shellac F, a new fluoride varnish, and its effects on human dentin hydraulic conductance. Methods Shellac F was compared to another fluoride varnish (Duraphat® ) and a fluoride containing desensitizing agent (Isodan® ). The cytotoxicity test was performed on human gingival fibroblasts and through dentin slice on human pulp fibroblasts. The hydraulic conductance (Lp) was recorded by fluid filtration with a Flodec device under a constant pressure (15 cm H2 O). The treated surface of the dentin disks and their sections were also investigated with SEM. Results The cytotoxicity test on gingival fibroblasts revealed that Duraphat® was the least cytotoxic material, followed by Shellac F then Isodan® . With dentin slice interposition, a lower level of cytotoxicity was obtained. All of them showed a lower cytotoxicity decreasing on further dilutions ( p < 0.001). The measurement of hydraulic conductance showed that all materials resulted in a significant decrease in dentin permeability after 24 h comprising between 60 and 76%, but there was no statistically significant difference among the materials. This decrease was still over 50% of the initial values after 7 days for all three materials. SEM investigation showed dentin tubules covered with a thick layer of Shellac F or Duraphat® whilst no material was observed on dentin surfaces treated with Isodan®. Significance Shellac F showed an adequate cellular compatibility and a significant effect on human dentin hydraulic conductance. This indicates that the new material is safe and seems to be effective as a potential desensitizing agent.
ISSN:0109-5641
1879-0097
DOI:10.1016/j.dental.2007.11.014