Artificial Caries Lesion Characteristics after Secondary Demineralization with Theobromine-Containing Protocol.

Molecules

Department of Cariology, Operative Dentistry, and Dental Public Health, School of Dentistry, Indiana University, 415 Lancing Street, Indianapolis, IN 46202, USA.

Published: January 2021

AI Article Synopsis

  • - The study aimed to create artificial caries lesions with different characteristics to better understand caries development in a laboratory setting, specifically through a protocol involving theobromine and fluoride.
  • - Researchers used bovine enamel slabs that were first demineralized and then exposed to different combinations of fluoride and theobromine, measuring changes in mineral content and lesion depth using advanced imaging techniques.
  • - Results showed that fluoride led to significantly deeper lesions compared to no fluoride, while the addition of theobromine didn't enhance mineral uptake; however, lesions with both chemicals had a more uniform mineral profile.

Article Abstract

Developing artificial caries lesions with varying characteristics is needed to adequately study caries process in vitro. The objective of this study was to investigate artificial caries lesion characteristics after secondary demineralization protocol containing theobromine and fluoride. Sixty bovine enamel slabs (4 × 3 mm) were demineralized using a Carbopol-containing protocol for 6 days. A baseline area (2 × 3 mm) was protected with acid-resistant nail varnish, after which specimens were exposed for 24 h to a secondary demineralization protocol containing acetic acid plus one of four fluoride/theobromine combinations ( = 15): theobromine (50 or 200 ppm) and fluoride (0 or 1 ppm). Specimens were sectioned and analyzed using transverse microradiography for changes in mineral content, lesion depth, and surface layer mineralization. Data was analyzed using paired t-test and analysis of variance followed by Bonferroni test at 0.05 significance level. After secondary demineralization, fluoride-containing groups had significantly deeper lesions ( = 0.002 and 0.014) compared to the group with 0 ppm fluoride and 50 ppm theobromine. Mineral content and lesion depth were significantly different compared to baseline for all groups. Theobromine did not show an added effect on mineral uptake. Theobromine-containing groups exhibited particularly deep lesions with a more uniform mineral profile in the presence of fluoride.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7827480PMC
http://dx.doi.org/10.3390/molecules26020300DOI Listing

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