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Antimicrobial efficacy of alternative compounds for use in oral care toward biofilms from caries‐associated bacteria in vitro

机译:替代化合物用于口腔护理的抗菌药物效果来自龋齿相关细菌的生物膜

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For caries‐active patients, antimicrobial measures may be useful in addition to mechanical biofilm removal. The aim of this study was to investigate the antimicrobial efficacy of alternative compounds for use in oral care from two main categories (i.e., preservatives and natural compounds) toward biofilms from caries‐associated bacteria as compared to oral care gold‐standards chlorhexidine digluconate (CHX), cetylpyridinium chloride (CPC), and zinc. Compounds were screened in initial Streptococcus mutans biofilms. Then, the most effective compounds were further investigated in mature S.?mutans and polymicrobial biofilms comprising Actinomyces naeslundii , Actinomyces odontolyticus, and S.?mutans . Here, distinct treatment periods and concentrations were evaluated. Biofilms were visualized by scanning electron microscopy and bacterial membrane damage was evaluated by means of flow cytometry and staining with SYBR Green and propidium iodide. Citrus extract was the only compound exhibiting similar antimicrobial efficacy in initial S.?mutans biofilms (5 log 10 ) as compared to CHX and CPC, but its effect was clearly inferior in mature S.?mutans and polymicrobial biofilms. Flow cytometric data suggested that the mechanism of antimicrobial action of citrus extract may be based on damage of bacterial membranes similar to CHX and CPC. From all alternative compounds investigated in this study, citrus extract exhibited the highest antimicrobial efficacy toward in vitro biofilms from caries‐associated bacteria, but still was less effective than oral care gold‐standard antiseptics CHX and CPC. Nevertheless, citrus extract may be a valuable antimicrobial compound for use in oral care for caries‐active patients.
机译:对于龋齿活性患者,除了机械生物膜除去外,抗微生物测量可能是有用的。本研究的目的是研究替代化合物在口腔护理中使用的替代化合物的抗菌疗效来自两种主要类别(即防腐剂和天然化合物),与龋齿相关的细菌相比,与口腔护理金 - 标准氯己定量的Digluconate相比(CHX ),十六烷吡啶氯化吡啶(CPC)和锌。将化合物筛选在初始链球菌生物膜中。然后,进一步研究了最有效的化合物,在成熟的S.?培养物和多种细胞生物膜中进一步研究了含有放电瘤Neeslundii,Altinomyces Odontolyticus和S.?mutans的含量。这里,评估不同的治疗时间和浓度。通过扫描电子显微镜可视化生物膜,通过流式细胞术评估细菌膜损伤并用Sybr绿色和碘化丙锭染色。与CHX和CPC相比,柑橘提取物是在最初的S.?培养物生物膜(> 5 log 10)中表现出类似的抗微生物功效的唯一化合物,但其效果显然是成熟的S.?培养物和多元化生物膜下劣等。流式细胞仪数据表明柑橘提取物的抗微生物作用机制可以基于与CHX和CPC类似的细菌膜的损伤。从本研究中研究的所有替代化合物中,柑橘提取物对来自龋齿相关细菌的体外生物膜的抗菌药物最高,但仍比口腔护理金标准防腐剂CHX和CPC效果较小。然而,柑橘提取物可以是用于口腔护理的有价值的抗微生物化合物,用于龋齿活性患者。

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