首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Effects of Ciprofloxacin-containing Scaffolds on Enterococcus faecalis Biofilms
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Effects of Ciprofloxacin-containing Scaffolds on Enterococcus faecalis Biofilms

机译:含环丙沙星的支架对粪肠球菌生物膜的影响

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Introduction: Antibiotic-containing polymer-based nanofibers (hereafter referred to as scaffolds) have demonstrated great potential for their use in regenerative endodontics from both an antimicrobial and cytocompatibility perspective. This study sought to evaluate in vitro the effects of ciprofloxacin (CIP)-containing polymer scaffolds against Enterococcus faecalis biofilms. Methods: Human mandibular incisors were longitudinally sectioned to prepare radicular dentin specimens. Sterile dentin specimens were distributed in 24-well plates and inoculated with E. faecalisfor biofilm formation. Infected dentin specimens were exposed to 3 groups of scaffolds, namely polydioxanone (PDS) (control), PDS + 5 wt% CIP, and PDS + 25 wt% CIP for 2 days. Colony-forming units (CFU/mL) (n = 10) and scanning electron microscopy (SEM) (n -= 2) were performed to quantitatively and qualitatively assess the antimicrobial effectiveness, respectively. Results: PDS scaffold containing CIP at 25 wt% showed maximum bacteria elimination with no microbial growth, differing statistically (P < .05) from the control (PDS) and from PDS scaffold containing CIP at 5 wt%. Statistical differences (P < .05) were also seen for the CFU/mL data between pure PDS (5.92-6.02 log CFU/mL) and the PDS scaffold containing CIP at 5 wt% (5.39 5.87 log CFU/mL). SEM images revealed a greater concentration of bacteria on the middle third of the dentin specimen. after 5 days of biofilm formation. On scaffold exposures, SEM images showed similar results when compared with the CFU/mL data. Dentin specimens exposed to PDS + 25 wt% CIP scaffolds displayed a practically bacteria-free surface. Conclusions: On the basis of the data presented, newly developed antibiotic-containing electrospun scaffolds hold promise as an intracanal medicament to eliminate biofilm/infection before regenerative procedures.
机译:简介:从抗菌和细胞相容性的角度来看,含抗生素的基于聚合物的纳米纤维(以下称为支架)已显示出其在再生牙髓治疗中的巨大潜力。这项研究试图在体外评估含环丙沙星(CIP)的聚合物支架对粪肠球菌生物膜的影响。方法:纵切人类下颌切牙,制备放射状牙本质标本。将无菌的牙本质标本分布在24孔板中,并用粪肠球菌接种以形成生物膜。将感染的牙本质样品暴露于3组支架中,即聚二恶烷酮(PDS)(对照),PDS + 5 wt%CIP和PDS + 25 wt%CIP 2天。进行菌落形成单位(CFU / mL)(n = 10)和扫描电子显微镜(SEM)(n-= 2)分别定量和定性评估抗菌效果。结果:含有25 wt%的CIP的PDS支架显示出最大的细菌清除率,并且没有微生物生长,与对照组(PDS)和含有5 wt%的CIP的PDS支架在统计学上有差异(P <.05)。在纯PDS(5.92-6.02 log CFU / mL)和含有5 wt%CIP(5.39 5.87 log CFU / mL)的PDS支架之间的CFU / mL数据也观察到统计学差异(P <.05)。 SEM图像显示在牙本质标本的中间三分之一处细菌浓度更高。生物膜形成5天后。与CFU / mL数据相比,在支架暴露下,SEM图像显示出相似的结果。暴露于PDS + 25 wt%CIP支架的牙本质样品显示出几乎没有细菌的表面。结论:根据所提供的数据,新开发的含抗生素的电纺支架有望在再生手术前作为根管内药物消除生物膜/感染。

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