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Topical ferumoxytol nanoparticles disrupt biofilms and prevent tooth decay in vivo via intrinsic catalytic activity

机译:阿魏酸局部纳米颗粒通过固有的催化活性破坏生物膜并防止体内蛀牙

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摘要

Ferumoxytol is a nanoparticle formulation approved by the U.S. Food and Drug Administration for systemic use to treat iron deficiency. Here, we show that, in addition, ferumoxytol disrupts intractable oral biofilms and prevents tooth decay (dental caries) via intrinsic peroxidase-like activity. Ferumoxytol binds within the biofilm ultrastructure and generates free radicals from hydrogen peroxide (H2O2), causing in situ bacterial death via cell membrane disruption and extracellular polymeric substances matrix degradation. In combination with low concentrations of H2O2, ferumoxytol inhibits biofilm accumulation on natural teeth in a human-derived ex vivo biofilm model, and prevents acid damage of the mineralized tissue. Topical oral treatment with ferumoxytol and H2O2 suppresses the development of dental caries in vivo, preventing the onset of severe tooth decay (cavities) in a rodent model of the disease. Microbiome and histological analyses show no adverse effects on oral microbiota diversity, and gingival and mucosal tissues. Our results reveal a new biomedical application for ferumoxytol as topical treatment of a prevalent and costly biofilm-induced oral disease.
机译:Ferumoxytol是一种经美国食品药品监督管理局批准用于系统治疗铁缺乏症的纳米颗粒制剂。在这里,我们表明,此外,阿魏酸破坏了顽固的口腔生物膜并通过内在的过氧化物酶样活性防止了蛀牙(龋齿)。 Ferumoxytol结合在生物膜超微结构内,并从过氧化氢(H2O2)产生自由基,从而通过细胞膜破坏和细胞外聚合物质基质降解而引起细菌原位死亡。与低浓度的H2O2组合,阿魏酸在人源性离体生物膜模型中抑制自然牙齿上的生物膜积聚,并防止酸化矿化组织。用阿魏酸和过氧化氢进行局部口服治疗可在体内抑制龋齿的发生,从而在该疾病的啮齿动物模型中防止严重的蛀牙(蛀牙)发作。微生物组和组织学分析显示对口腔微生物群多样性以及牙龈和粘膜组织没有不利影响。我们的研究结果揭示了阿魏酸作为一种普遍治疗和昂贵的生物膜诱发的口腔疾病的局部治疗的新生物医学应用。

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