Hussain Badra, Simm Roger, Bueno Jaime, Giannettou Savvas, Naemi Ali-Oddin, Lyngstadaas Ståle Petter, Haugen Håvard Jostein
Department of Biomaterials, Institute of Clinical Dentistry, University of Oslo, Oslo, Norway.
Institute of Oral Biology, University of Oslo, Oslo, Norway.
Regen Biomater. 2024 Feb 10;11:rbae014. doi: 10.1093/rb/rbae014. eCollection 2024.
Eradicating biofouling from implant surfaces is essential in treating peri-implant infections, as it directly addresses the microbial source for infection and inflammation around dental implants. This controlled laboratory study examines the effectiveness of the four commercially available debridement solutions '(EDTA (Prefgel), NaOCl (Perisolv), HO (Sigma-Aldrich) and Chlorhexidine (GUM Paroex))' in removing the acquired pellicle, preventing pellicle re-formation and removing of a multi-species oral biofilm growing on a titanium implant surface, and compare the results with the effect of a novel formulation of a peroxide-activated 'Poloxamer gel (Nubone Clean)'. Evaluation of pellicle removal and re-formation was conducted using scanning electron microscope (SEM), energy-dispersive X-ray spectroscopy and X-ray photoelectron spectroscopy to assess the surface morphology, elemental composition and chemical surface composition. Hydrophilicity was assessed through contact angle measurements. The multi-species biofilm model included , and , reflecting the natural oral microbiome's complexity. Biofilm biomass was quantified using safranin staining, biofilm viability was evaluated using confocal laser scanning microscopy, and SEM was used for morphological analyses of the biofilm. Results indicated that while no single agent completely eradicated the biofilm, the 'Poloxamer gel' activated with 'HO' exhibited promising results. It minimized re-contamination of the pellicle by significantly lowering the contact angle, indicating enhanced hydrophilicity. This combination also showed a notable reduction in carbon contaminants, suggesting the effective removal of organic residues from the titanium surface, in addition to effectively reducing viable bacterial counts. In conclusion, the 'Poloxamer gel + HO' combination emerged as a promising chemical decontamination strategy for peri-implant diseases. It underlines the importance of tailoring treatment methods to the unique microbial challenges in peri-implant diseases and the necessity of combining chemical decontaminating strategies with established mechanical cleaning procedures for optimal management of peri-implant diseases.
消除种植体表面的生物污垢对于治疗种植体周围感染至关重要,因为它直接解决了牙种植体周围感染和炎症的微生物来源问题。这项对照实验室研究考察了四种市售清创溶液(乙二胺四乙酸(Prefgel)、次氯酸钠(Perisolv)、过氧化氢(Sigma - Aldrich)和氯己定(GUM Paroex))在去除获得性薄膜、防止薄膜重新形成以及去除生长在钛种植体表面的多物种口腔生物膜方面的有效性,并将结果与一种新型过氧化物激活的泊洛沙姆凝胶(Nubone Clean)的效果进行比较。使用扫描电子显微镜(SEM)、能量色散X射线光谱和X射线光电子能谱对薄膜的去除和重新形成进行评估,以评估表面形态、元素组成和化学表面组成。通过接触角测量评估亲水性。多物种生物膜模型包括变形链球菌、牙龈卟啉单胞菌和血链球菌,反映了天然口腔微生物群的复杂性。使用番红染色对生物膜生物量进行定量,使用共聚焦激光扫描显微镜评估生物膜活力,并使用扫描电子显微镜对生物膜进行形态分析。结果表明,虽然没有单一试剂能完全根除生物膜,但用过氧化氢激活的泊洛沙姆凝胶显示出有前景的结果。它通过显著降低接触角将薄膜的再污染降至最低,表明亲水性增强。这种组合还显示出碳污染物显著减少,这表明除了有效减少活菌数量外,还能有效去除钛表面的有机残留物。总之,泊洛沙姆凝胶+过氧化氢组合成为一种有前景的种植体周围疾病化学去污策略。它强调了针对种植体周围疾病中独特的微生物挑战定制治疗方法的重要性,以及将化学去污策略与既定的机械清洁程序相结合以实现种植体周围疾病最佳管理的必要性。