AI Article Synopsis

  • Dental caries, a prevalent disease caused by oral biofilms, persists despite fluoride use, but iron oxide nanoparticles (ferumoxytol) can degrade these biofilms with hydrogen peroxide.
  • When combined with stannous fluoride, ferumoxytol significantly enhances the inhibition of biofilm growth and enamel damage compared to using either treatment alone.
  • This combination is effective in controlling dental caries in live subjects at much lower concentrations and shows no negative effects on surrounding tissues or the oral microbiome, highlighting its potential as a safe and efficient treatment for oral health.

Article Abstract

Dental caries is the most common human disease caused by oral biofilms despite the widespread use of fluoride as the primary anticaries agent. Recently, an FDA-approved iron oxide nanoparticle (ferumoxytol, Fer) has shown to kill and degrade caries-causing biofilms through catalytic activation of hydrogen peroxide. However, Fer cannot interfere with enamel acid demineralization. Here, we show notable synergy when Fer is combined with stannous fluoride (SnF), markedly inhibiting both biofilm accumulation and enamel damage more effectively than either alone. Unexpectedly, we discover that the stability of SnF is enhanced when mixed with Fer in aqueous solutions while increasing catalytic activity of Fer without any additives. Notably, Fer in combination with SnF is exceptionally effective in controlling dental caries in vivo, even at four times lower concentrations, without adverse effects on host tissues or oral microbiome. Our results reveal a potent therapeutic synergism using approved agents while providing facile SnF stabilization, to prevent a widespread oral disease with reduced fluoride exposure.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10541875PMC
http://dx.doi.org/10.1038/s41467-023-41687-8DOI Listing

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