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Oral biofilm elimination by combining iron-based nanozymes and hydrogen peroxide-producing bacteria

机译:通过组合铁基纳佐和产生产生的细菌来消除口服生物膜消除

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摘要

Dental caries is a global risk in terms of oral health in many schoolchildren and in a vast majority of adults. The primary factor for caries formation is the attachment of bacteria on the tooth surface to form an oral biofilm which generates acids to demineralize calcium and eventually cause tooth decay. Oral biofilm elimination is still a challenge because bacteria are embedded inside with the biofilm matrix protecting them, preventing the penetration of antibiotics or bactericides. Promising strategies for disrupting oral biofilms have been developed, including the use of natural enzymes to degrade the biofilm matrix and hydrogen peroxide to kill bacteria. Here we demonstrate a strategy that combines nanozymes with peroxidase-like activity and bacteria generating biogenic hydrogen peroxide to eliminate oral biofilms for caries treatment. By using a saliva-coated hydroxyapatite disc and sectioned human tooth to mimic the real oral environment, we analyze the influence of iron oxide nanozymes or iron sulfide nanozymes on a Streptococcus mutans biofilm in the presence of Streptococcus gordonii which can generate hydrogen peroxide. Bacterial viability assays and biofilm morphology characterization show that the combination of nanozymes and bacteria remarkably reduces the bacteria number (5 lg reduction) and biofilm matrix (85% reduction). Therefore, the combination of iron-based nanozymes and hydrogen peroxide-generating bacteria may provide a new strategy for oral biofilm elimination in dental caries treatment.
机译:龋齿是许多学童口腔健康方面的全球风险,并在绝大多数成年人中。龋齿形成的主要因素是将细菌附着在牙齿表面上以形成口腔生物膜,形成酸性钙的酸,最终导致蛀牙。口服生物膜消除仍然是一个挑战,因为细菌内部用生物膜基质嵌入中,防止抗生素或杀菌剂的渗透。已经开发出了破坏口腔生物膜的有希望的策略,包括使用天然酶来降解生物膜基质和过氧化氢以杀灭细菌。在这里,我们证明了一种将纳米酶与过氧化物酶活性和生成生物过氧化氢的细菌结合的策略,以消除口服生物膜的龋齿治疗。通过使用唾液型羟基磷灰石盘和切片人牙以模仿真实的口腔环境,我们在能够产生过氧化氢的链球菌Gordonii存在下,分析铁氧化物纳米氧化物或铁硫化物纳释的影响。细菌活力测定和生物膜形态表征表明,纳释和细菌的组合显着降低了细菌数(5Lg还原)和生物膜基质(减少85%)。因此,铁基纳佐和过氧化氢细菌的组合可以为龋齿治疗中的口腔生物膜消除提供新的策略。

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