Department of Radiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Biofilm Research Labs, Levy Center for Oral Health, School of Dental Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Nat Commun. 2023 Sep 29;14(1):6087. doi: 10.1038/s41467-023-41687-8.
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.
尽管广泛使用氟化物作为主要抗龋剂,但龋齿仍是由口腔生物膜引起的最常见人类疾病。最近,一种经美国食品和药物管理局批准的氧化铁纳米颗粒(ferumoxytol,Fer)已被证明可通过过氧化氢的催化激活来杀死和降解致龋生物膜。然而,Fer 不能干扰牙釉质脱矿。在这里,我们发现 Fer 与氟化亚锡(SnF)联合使用时具有显著的协同作用,比单独使用任何一种药物更有效地显著抑制生物膜的积累和牙釉质的损伤。出乎意料的是,我们发现当 Fer 与 SnF 在水溶液中混合时,SnF 的稳定性增强,同时增加了 Fer 的催化活性,而无需任何添加剂。值得注意的是,Fer 与 SnF 联合使用在控制体内龋齿方面非常有效,即使在低浓度下,也不会对宿主组织或口腔微生物组产生不良反应。我们的研究结果揭示了使用已批准药物的强大治疗协同作用,同时提供了简便的 SnF 稳定化方法,以减少氟化物暴露来预防广泛的口腔疾病。