Cytotoxicity, interaction with dentine and efficacy on multispecies biofilms of a modified salt solution intended for endodontic disinfection in a new in vitro biofilm model

生物膜 次氯酸钠 洗必泰 抗菌剂 体内 体外 微生物学 细胞毒性 根管 福尔马赞 粪肠球菌 化学 牙科 离体 牙体牙髓科 变形链球菌 阴性对照 细菌 生物 金黄色葡萄球菌 医学 生物化学 传统医学 生物技术 有机化学 遗传学
作者
Suzette V. van der Waal,Nina Scheres,J.J. de Soet,Paul R. Wesselink,Wim Crielaard
出处
期刊:International Endodontic Journal [Wiley]
卷期号:48 (2): 153-161 被引量:12
标识
DOI:10.1111/iej.12294
摘要

Abstract Aim To investigate the cytotoxicity of a modified salt solution ( MSS ) and evaluate the antimicrobial properties of MSS on in vitro biofilm models. Methodology In a metabolic assay, fibroblasts derived from periodontal ligaments ( PDL ) of human extracted teeth were cultured and challenged with MSS or controls. Then, in active attachment biofilm models, the efficacy of MSS in the presence of dentine powder and in eliminating mature biofilms was investigated. In the dentine assay, a biofilm of E nterococcus faecalis was employed. For the final assay, microorganisms were retrieved from infected root canals and cultured to produce biofilms. After the treatments with MSS or the controls, the biofilms were collected, serially diluted and plated. The colony‐forming units were counted. One‐way anova was used to analyse the differences between the groups. A P < 0.05 was considered significant. Results The PDL fibroblasts remained metabolically active after challenges with MSS . Dentine powder did not alter the efficacy of MSS ( P > 0.05). In endodontic biofilms, the culturable bacteria were equally reduced by MSS , 2% chlorhexidine ( CHX ) or 2% sodium hypochlorite ( N a OC l) ( P > 0.05). Conclusions Modified salt solution is noncytotoxic in vitro and has good antimicrobial properties equal to CHX and N a OC l. Although the results are promising, ex vivo and in vivo studies are needed before its use as an interappointment root canal dressing can be considered.

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