Synbiotic-fluoride synergism on enamel remineralization, cytotoxicity and genotoxicity

The objectives of the present study were to examine the – a) enamel remineralization potential of synbiotic-fluoride (SF) therapy using a multi-species bacterial pH-cycling model; and b) cytotoxic and genotoxic effects of SF therapy extracts. The SF therapy group comprised of 2% arginine (Arg), 0.2%...

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Veröffentlicht in:Journal of dentistry 2023-01, Vol.128, p.104356, Article 104356
Hauptverfasser: BIJLE, Mohammed Nadeem, ABDALLA, Mohamed Mahmoud, CHU, Chun Hung, YIU, Cynthia Kar Yung
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Sprache:eng
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Zusammenfassung:The objectives of the present study were to examine the – a) enamel remineralization potential of synbiotic-fluoride (SF) therapy using a multi-species bacterial pH-cycling model; and b) cytotoxic and genotoxic effects of SF therapy extracts. The SF therapy group comprised of 2% arginine (Arg), 0.2% NaF, and a probiotic Lactobacillus rhamnosus GG (LRG). The intervention groups studied were: 1) No treatment; 2) 2% Arg; 3) 0.2% NaF; 4) LRG; 5) 2% Arg+0.2% NaF; 6) 2% Arg+LRG; 7) 0.2% NaF+LRG; and 8) 2% Arg+0.2% NaF+LRG (SF therapy). The enamel remineralization potential of SF therapy was investigated under cariogenic biofilm challenge; while the cytotoxicity and genotoxicity of SF therapy extracts were examined on HGF-1 and Chinese hamster fibroblast V79, respectively. To determine the remineralization effect, the specimens were subjected to mineral density (MD) assessment using micro-CT, Ca/P molar ratio with SEM-EDX, and enamel fluoride uptake (EFU) estimates. The HGF-1 proliferation assessment was quantified using MTT/CCK-8 assays with qualitative analysis by nuclei staining Hoechst-based fluorescence imaging. The genotoxicity was determined by micronuclei formation test. Mineral gain and %remineralization derived from MD assessment for the SF therapy were significantly higher than the other groups (p
ISSN:0300-5712
1879-176X
DOI:10.1016/j.jdent.2022.104356