Antimicrobial Effect of Nano-Calcium Hydroxide on the Four- and Six-Week-Old Intra-Canal Enterococcus Faecalis Biofilm.

Mohammad Frough Reyhani, Negin Ghasemi, Amin Salem Milani, Masoumeh Abbasi Asl
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Abstract

Statement of the problem: Enterococcus faecalis (E. faecalis) is one of the most important microorganisms in the evaluation of the antibacterial effects of intra-canal medications due to its ability to penetrate dentinal tubules and form biofilms. Calcium hydroxide, as the most common intra-canal medication, has little effect on this bacterial species. In contrast, it is hypothesized that nano scale hydroxide particles are more effective due to their smaller size and higher surface-to-volume ratio.

Purpose: This study aimed to investigate the antimicrobial effect of nano-calcium hydroxide on the four- and six-week-old intra-canal E. faecalis biofilms.

Materials and method: In this in vitro study, seventy maxillary single-canal premolar teeth were used. After cleaning and preparing the root canals, the samples were placed in vials containing E. faecalis solution in which the culture medium was changed daily. Each group was divided into three subgroups (n=20) in terms of the antimicrobial material used as the intra-canal medication including subgroup 1: nano-calcium hydroxide, subgroup 2: calcium hydroxide, and subgroup 3: phosphate-buffered saline solution (control group). The antimicrobial property was measured by counting colony-forming units (CFU). The data were analyzed with Mann-Whitney U and Kruskal-Wallis tests. Statistical significance was set at p< 0.05.

Results: The mean CFU in the six-week-old biofilm group was significantly higher than that in the four-week-old biofilm (p= 0.003). A comparison between the subgroups showed a significant decrease in CFU in the six-week-old biofilm in the nano-calcium hydroxide subgroup compared to that in the calcium hydroxide subgroup (p= 0.002). However, the decrease was not significant in the four-week-old biofilm group (p= 0.06).

Conclusion: Under the limitations of the present study, the antimicrobial properties of nano-calcium hydroxide were higher than conventional calcium hydroxide on mature biofilm, whereas the antimicrobial properties were not clinically and significantly different on immature biofilm.

Abstract Image

纳米氢氧化钙对4、6周龄管内粪肠球菌生物膜的抑菌作用。
问题说明:粪肠球菌(E. faecalis)具有穿透牙本质小管并形成生物膜的能力,是评价管内药物抗菌效果最重要的微生物之一。氢氧化钙作为最常见的管内药物,对这种细菌几乎没有影响。相比之下,假设纳米级氢氧化物颗粒由于其更小的尺寸和更高的表面体积比而更有效。目的:研究纳米氢氧化钙对4周龄和6周龄粪肠球菌生物膜的抑菌作用。材料与方法:采用70颗上颌单管前磨牙进行体外实验。清洁和准备根管后,将样品放置在装有粪肠杆菌溶液的小瓶中,每天更换培养基。每组根据管内使用的抗菌材料分为3个亚组(n=20),其中亚组1为纳米氢氧化钙,亚组2为氢氧化钙,亚组3为磷酸盐缓冲盐水溶液(对照组)。通过计数菌落形成单位(CFU)来测定抗菌性能。采用Mann-Whitney U和Kruskal-Wallis检验对数据进行分析。p< 0.05为差异有统计学意义。结果:6周龄生物膜组的平均CFU显著高于4周龄生物膜组(p= 0.003)。亚组之间的比较显示,与氢氧化钙亚组相比,纳米氢氧化钙亚组的6周龄生物膜CFU显著降低(p= 0.002)。而4周龄生物膜组降低不显著(p= 0.06)。结论:在本研究的限制下,纳米氢氧化钙对成熟生物膜的抗菌性能高于常规氢氧化钙,而对未成熟生物膜的抗菌性能无临床差异且差异显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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