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Hydroxyl radicals generated by hydrogen peroxide photolysis recondition biofilm-contaminated titanium surfaces for subsequent osteoblastic cell proliferation

机译:过氧化氢光解产生的羟自由基可修复受生物膜污染的钛表面以用于随后的成骨细胞增殖

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摘要

Titanium dental implants have been successfully used for decades; however, some implants are affected by peri-implantitis due to bacterial infection, resulting in loss of supporting bone. This study aimed to evaluate the effect of an antimicrobial chemotherapy employing H2O2 photolysis—developed to treat peri-implantitis—on biofilm-contaminated titanium surfaces in association with osteoblastic cell proliferation on the treated surface. Titanium discs were sandblasted and acid-etched, followed by contamination with a three-species biofilm composed of Porphyromonas gingivalis, Fusobacterium nucleatum, and Streptococcus mitis. This biofilm model was used as a simplified model of clinical peri-implantitis biofilm. The discs were subjected to ultrasound scaling, followed by H2O2 photolysis, wherein 365-nm LED irradiation of the disc immersed in 3% H2O2 was performed for 5 min. We analysed proliferation of mouse osteoblastic cells (MC3T3-E1) cultured on the treated discs. Compared with intact discs, biofilm contamination lowered cell proliferation on the specimen surface, whereas H2O2 photolysis recovered cell proliferation. Thus, H2O2 photolysis can recover the degraded biocompatibility of biofilm-contaminated titanium surfaces and can potentially be utilised for peri-implantitis treatment. However, to verify the findings of this study in relation to clinical settings, assessment using a more clinically relevant multi-species biofilm model is necessary.
机译:钛牙植入物已经成功使用了数十年。然而,一些植入物由于细菌感染而受到植入物周围炎的影响,导致支撑骨的损失。这项研究旨在评估采用H2O2光解的抗微生物化学疗法(开发用于治疗种植体周围炎)对受生物膜污染的钛表面的影响,以及受治疗表面上成骨细胞的增殖。钛圆盘经过喷砂和酸蚀,然后被由牙龈卟啉单胞菌,核杆菌和核糖链球菌组成的三种生物膜污染。该生物膜模型被用作临床种植体周围炎生物膜的简化模型。对光盘进行超声缩放,然后进行H2O2光解,其中将365 nm LED光盘浸入3%H2O2中进行5分钟。我们分析了在处理过的光盘上培养的小鼠成骨细胞(MC3T3-E1)的增殖。与完整圆盘相比,生物膜污染降低了标本表面的细胞增殖,而H2O2光解则恢复了细胞增殖。因此,H2O2的光解作用可以恢复受生物膜污染的钛表面降解的生物相容性,并有可能被用于种植体周围炎的治疗。但是,为了验证这项研究与临床环境有关的发现,有必要使用更具临床相关性的多物种生物膜模型进行评估。

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