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首页> 外文期刊>The International journal of periodontics & restorative dentistry >A Pilot Study on the Efficacy of a Treatment Algorithm to Detoxify Dental Implant Surfaces Affected by Peri-implantitis
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A Pilot Study on the Efficacy of a Treatment Algorithm to Detoxify Dental Implant Surfaces Affected by Peri-implantitis

机译:治疗算法治疗牙髓炎患者解毒植入物表面的试验研究

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摘要

This in vitro pilot study was performed to determine whether a treatment algorithm including mechanical debridement, followed by air powder abrasion with glycine, followed by citric acid conditioning with vigorous flushing of the surface with sterile water after each step, is capable of decontaminating an infected implant surface. A total of 14 dental implants that were deemed hopeless due to advanced peri-implantitis were extracted. Of these, 6 implants served as tests and had their exposed surfaces treated with the decontamination protocol, 6 served as untreated controls, and 2 were mechanically treated only, followed by rubbing the surface with sterile saline. All implants were placed in culture with human osteoprogenitor cells for 72 hours, and evaluation was performed using scanning electron microscopy. The 6 test implants all demonstrated attachment and proliferation of the normal human osteoprogenitor cells on their prior exposed and decontaminated surfaces. All of the untreated control and the mechanically debrided, sterile water-treated implants failed to demonstrate this same success. The results suggest that this protocol can decontaminate an implant surface affected by peri-implantitis. Further studies are warranted to determine if this technique would demonstrate similar success over a greater number of implants and whether this outcome may occur in humans.
机译:进行该体外试验研究以确定包括机械清洁的治疗算法,然后用甘氨酸的空气粉末磨损,然后在每个步骤后用无菌水剧烈冲洗表面的柠檬酸调理,能够去纳米植入物表面。由于提取了由于先进的Peri-inclimantitis,共有14种牙科植入物被视为无望。其中6种植入物作为试验,并使它们的露出表面用净化方案处理,6种作为未处理的对照,只有2个机械处理,然后用无菌盐水摩擦表面。将所有植入物均用人骨催化剂细胞置于培养物72小时,使用扫描电子显微镜进行评价。 6个测试植入物全部证明了正常人骨催化剂细胞的附着和增殖在其先前暴露和净化的表面上。所有未处理的控制和机械畅销的无菌水处理的植入物未能证明相同的成功。结果表明,该方案可以抵消受脑膜炎影响的植入物。需要进一步的研究以确定该技术是否会在更多植入物中表现出类似的成功,以及是否可能发生这种结果。

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