Saeed Noorollahian, Marzie Kachuie, Zahra Hatamzade, Majid Moghadam, T. Narimani
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The anti-bacterial efficacy against Porphyromonas gingivalis was evaluated using the disk diffusion method. To analyze data, Kruskal–Wallis, Friedman, and Wilcoxon tests were done. The significance level was set at 0.05.\n\n\n\nNo zone of the inhibition was formed in Groups 1 and 2. In Group 3, the mean (SD) diameter of the inhibition zone in the first 5-day to sixth 5-day were 38.7(8.2), 25(4.8), 17.8(5.6), 7.63(5.37), 1.5(2.83), and 0 millimeters, respectively.\n\n\n\nNanotubes containing doped ZnO and Doxycycline are capable of preventing bacterial growth around the mini implant surfaces for at least up to 30 days. To manage inflammation of surrounding tissues of mini-implants, nanotubes are not effective alone. 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引用次数: 1
摘要
固支体的保存是正畸治疗成功的关键。微型植入物在这个领域掀起了一场革命。正畸微型种植体因炎症和感染而失败是导致支抗丢失的原因之一。本研究的目的是评估一种新型微型种植体表面修饰的效果,以提高对微生物污染和周围组织炎症的抵抗力。将直径1.6 mm、长度8 mm的24颗正畸微型种植体(Jeil Medical Corporation, Korea)随机分为3组:第1组:对照组;第2组:表面阳极氧化制备纳米管;第3组:纳米管中掺杂氧化锌(ZnO),然后加入强力霉素。采用纸片扩散法评价其对牙龈卟啉单胞菌的抗菌效果。为了分析数据,进行了Kruskal-Wallis、Friedman和Wilcoxon测试。显著性水平设为0.05。1、2组未形成抑制区。第3组前5天至第6天的平均抑制区直径(SD)分别为38.7(8.2)、25(4.8)、17.8(5.6)、7.63(5.37)、1.5(2.83)和0 mm。含有掺杂氧化锌和强力霉素的纳米管能够阻止细菌在微型植入物表面生长至少30天。为了控制微型植入物周围组织的炎症,纳米管不是单独有效的。因此,除了纳米管外,微型植入物表面的扩散材料是必要的。
The antimicrobial effect of doxycycline and doped ZnO in TiO2 nanotubes synthesized on the surface of orthodontic mini-implants
Anchorage preservation is crucial in orthodontic treatment success. Mini-implants make a revolution in this domain. The failure of orthodontic mini-implants due to inflammation and infection is one of the reasons for anchorage loss. The purpose of this study was to evaluate the effect of a novel mini-implant surface modification to improve resistance against microbial contamination and surrounding tissue inflammation.
Twenty-four orthodontic mini-implants (Jeil Medical Corporation, Korea) with 1.6 mm diameter and 8 mm length were randomly divided into three groups: Group 1: Control group, Group 2: Nanotubes were made on the surface with anodisation, and Group 3: Zinc Oxide (ZnO) doped into nanotubes, and then doxycycline is added to them. The anti-bacterial efficacy against Porphyromonas gingivalis was evaluated using the disk diffusion method. To analyze data, Kruskal–Wallis, Friedman, and Wilcoxon tests were done. The significance level was set at 0.05.
No zone of the inhibition was formed in Groups 1 and 2. In Group 3, the mean (SD) diameter of the inhibition zone in the first 5-day to sixth 5-day were 38.7(8.2), 25(4.8), 17.8(5.6), 7.63(5.37), 1.5(2.83), and 0 millimeters, respectively.
Nanotubes containing doped ZnO and Doxycycline are capable of preventing bacterial growth around the mini implant surfaces for at least up to 30 days. To manage inflammation of surrounding tissues of mini-implants, nanotubes are not effective alone. Therefore, the presence of diffusible materials in addition to nanotubes on the surface of mini-implants is necessary.