Literature DB >> 26647390

FT-Raman Spectroscopy Study of the Remineralization of Microwave-Exposed Artificial Caries.

J E Kerr1, G D Arndt2, D L Byerly2, R Rubinovitz3, C A Theriot4, I Stangel5.   

Abstract

Dental caries is a microbially mediated disease that can result in significant tooth structure degradation. Although the preponderance of lesions is treated by surgical intervention, various strategies have been developed for its noninvasive management. Here, we use a novel approach for noninvasive treatment based on killing Streptococcus mutans with high-frequency microwave energy (ME). The rationale for this approach is based on modulating the pH of caries to a physiological state to enable spontaneous tooth remineralization from exogenous sources. In the present study, after demonstrating that ME kills >99% of S. mutans in planktonic cultures, 8 enamel slabs were harvested from a single tooth. Baseline mineral concentration at each of 12 points per slab was obtained using Fourier transform (FT)-Raman spectroscopy. Surface demineralization was subsequently promoted by subjecting all samples to an S. mutans acidic biofilm for 6 d. Half of the samples were then exposed to high-frequency ME, and the other half were used as controls. All samples were next subjected to a remineralization protocol consisting of two 45-min exposures per 24-h period in tryptic soy broth followed by immersion in a remineralizing solution for the remaining period. After 10 d, samples were removed and cleaned. FT-Raman spectra were again obtained at the same 12 points per sample, and the mineral concentration was determined. The effect of the remineralization protocol on the demineralized slabs was expressed as a percentage of mineral loss or gain relative to baseline. The mineral concentration of the microwave-exposed group collectively approached 100% of baseline values, while that of the control group was in the order of 40%. Differences between groups were significant (P = 0.001, Mann-Whitney U test). We concluded that killing of S. mutans by ME promotes effective remineralization of S. mutans-demineralized enamel compared with controls. © International & American Associations for Dental Research 2015.

Entities:  

Keywords:  Raman spectroscopy; dental caries; in vitro techniques; microbiology; tooth remineralization; x-ray computerized tomography

Mesh:

Substances:

Year:  2015        PMID: 26647390     DOI: 10.1177/0022034515619370

Source DB:  PubMed          Journal:  J Dent Res        ISSN: 0022-0345            Impact factor:   6.116


  5 in total

1.  Remineralization effectiveness of adhesive containing amorphous calcium phosphate nanoparticles on artificial initial enamel caries in a biofilm-challenged environment.

Authors:  Menglin Fan; Jiaojiao Yang; Hockin H K Xu; Michael D Weir; Siying Tao; Zhaohan Yu; Yifang Liu; Meng Li; Xuedong Zhou; Kunneng Liang; Jiyao Li
Journal:  Clin Oral Investig       Date:  2021-04-23       Impact factor: 3.573

2.  Effects of S. mutans gene-modification and antibacterial calcium phosphate nanocomposite on secondary caries and marginal enamel hardness.

Authors:  Hong Chen; Yunhao Tang; Michael D Weir; Lei Lei; Radi Masri; Christopher D Lynch; Thomas W Oates; Ke Zhang; Tao Hu; Hockin H K Xu
Journal:  RSC Adv       Date:  2019-12-17       Impact factor: 4.036

3.  Remineralization Strategies in Oral Hygiene: A Position Paper of Italian Society of Oral Hygiene Sciences-S.I.S.I.O. Working Group.

Authors:  Consuelo Sanavia; Marco Tatullo; Jessica Bassignani; Silvia Cotellessa; Giulia Fantozzi; Giovanna Acito; Alessia Iommiello; Lorella Chiavistelli; Alessia Iommiello; Silvia Sabatini; Gianna Maria Nardi
Journal:  Open Dent J       Date:  2017-10-24

4.  A Novel Etchant System for Orthodontic Bracket Bonding.

Authors:  A I Ibrahim; V P Thompson; S Deb
Journal:  Sci Rep       Date:  2019-07-03       Impact factor: 4.379

Review 5.  Raman Spectroscopy: A Potential Diagnostic Tool for Oral Diseases.

Authors:  Yuwei Zhang; Liang Ren; Qi Wang; Zhining Wen; Chengcheng Liu; Yi Ding
Journal:  Front Cell Infect Microbiol       Date:  2022-02-04       Impact factor: 5.293

  5 in total

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