In vitro Caries-like Lesion Formation in F-containing Tooth Enamel

Author:

LeGeros R.Z.1,Silverstone L.M.2,Daculsi G.3,Kerebel L.M.3

Affiliation:

1. New York University Dental Center, 354 East 24th St., New York, New York 10010

2. University of Colorado Dental School, Denver, Colorado 80262

3. Université de Nantes, Place Alexis-Ricordeau, 44000 Nantes, France

Abstract

In vitro caries-like lesion formation in F-containing tooth enamel (shark) showed a lower depth of penetration compared to that in human enamel (42 vs. 100%). After longer periods of exposure, the depth of penetration in shark enamel is only 33% relative to that in human enamel. The extent of dissolution in acetate buffer for powdered human enamel and for synthetic F-free calcium-carbonated-apatites was greater than for powdered shark enamel and for synthetic F-containing apatites. These results suggest that the cariostatic action of fluoride may be explained in terms of a combination of two effects: (a) the stabilizing effect against acid dissolution (caries) when fluoride is incorporated in the tooth mineral (apatite), and (b) a greater degree of remineralization (repair) in the presence of F solution.

Publisher

SAGE Publications

Subject

General Dentistry

Reference38 articles.

1. Cariostatic Mechanisms of Fluorides: Clinical Observations

2. Trautz, O.R.; Crystalline Organization of Dental MineraL In: Structural and Chemical Organization of Teeth, Miles, A.E.W., Ed. New York, London : Academic Press, 1967, pp. 165-200.

3. LeGeros, R.Z.: Apatites in Biological Systems. In: Progress in Crystal Growth and Characterization, Vol. 4, Pamplin, B. , Ed. New York, Frankfort: Pergamon Press, 1981, pp. 1-45.

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