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Sulfate-Reducing Bacteria: Biofilm Formation and Corrosive Activity in Endodontic Files

机译:硫酸盐还原细菌:牙髓锉中的生物膜形成和腐蚀活性

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Aim. This study describes the biofilm formation and the corrosive capacity of sulfate-reducing bacteria (SRB) on the metallic structure of used endodontic files. Methods. Sulfate-reducing bacteria (SRB) (Desulfovibrio desulfuricans oral and Desulfovibrio fairfieldensis or D. desulfuricans environmental) were inoculated into the culture media (Postgate C culture medium or modified Postgate E culture medium). The biocorrosive potential of these bacteria will be an important component of a biopharmaceutical under development called BACCOR. Afterwards, four used endodontic files (UEFs) were separately inoculated into a specific culture media for 445 days at 30°C in an incubator. The four UEFs were placed in a scanning electron microscope (SEM) and analyzed by the energy-dispersive X-ray spectrometry (EDS). Results. The confocal laser scanning microscopic images indicate the presence of biofilm in the four samples. The SEM and SEM-EDS revealed the presence of rough, irregular structures adhering along the metallic surface of the used endodontic files, suggesting a mature calcified biofilm with a high concentration of Ca, P, C, and S. Conclusion. The formation of SRB biofilms on used endodontic files shows characteristics that may contribute to the biocorrosion of these files, and the results may also provide complementary data for a biopharmaceutical, which is still under development to assist in the removal of fractured endodontic files inside root channels.
机译:目标。这项研究描述了生物膜的形成和硫酸盐还原细菌(SRB)对使用过的牙髓锉金属结构的腐蚀能力。方法。将还原硫酸盐的细菌(SRB)(口服脱硫弧菌和Fairfieldensis脱硫弧菌或环境中的脱硫弧菌)接种到培养基(Postgate C培养基或改良的Postgate E培养基)中。这些细菌的生物腐蚀性潜力将成为正在开发的称为BACCOR的生物药物的重要组成部分。之后,将四个用过的牙髓锉(UEF)分别在培养箱中于30°C接种445天。将四个UEF放在扫描电子显微镜(SEM)中,并通过能量色散X射线光谱仪(EDS)进行分析。结果。共聚焦激光扫描显微图像表明在四个样品中存在生物膜。 SEM和SEM-EDS显示沿用过的牙髓锉的金属表面粘附着粗糙,不规则的结构,这表明钙化的生物膜成熟,钙,P,C和S的浓度较高。在使用过的牙髓锉上形成SRB生物膜显示出可能有助于这些锉的生物腐蚀的特性,结果还可能提供生物制药的补充数据,该生物制药仍在开发中,以帮助去除根管内的破裂的牙髓锉。

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