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体外对受污染钛表面的电化学处理:一种植入物表面去污方法

Electrochemical Treatment of Contaminated Titanium Surfaces in Vitro: An Approach for Implant Surface Decontamination.

作者信息

Al-Hashedi Ashwaq Ali, Laurenti Marco, Abdallah Mohamed-Nur, Albuquerque Rubens F, Tamimi Faleh

机构信息

Faculty of Dentistry, McGill University, 3640 University Street, Montreal, Quebec H3A 0C7, Canada.

Department of Prosthodontics, Faculty of Dentistry, Sana'a University, Wadi Dhaher Road, Sana'a, Yemen.

出版信息

ACS Biomater Sci Eng. 2016 Sep 12;2(9):1504-1518. doi: 10.1021/acsbiomaterials.6b00265. Epub 2016 Aug 4.

Abstract

Bacterial contamination on titanium implants can cause inflammation and eventually implant failure. Currently used methods for decontamination of implants have demonstrated limited success. Metal surfaces can be disinfected electrochemically. However, the effect of electrochemical treatments on biofilm-contaminated titanium is largely unknown. We hypothesized that electrochemical treatments are able to safely remove organic contamination and bacteria from titanium implants without altering their surfaces. This study was designed to assess the electrochemical properties of bacteria-contaminated surfaces in order to develop new treatments to clean titanium. Surface morphology, composition, bacterial load, and electrochemical properties of polished titanium discs were analyzed before and after biofilm contamination and subsequent decontamination with various electrochemical methods. The effect of the combination of the electrochemical with titanium brush cleaning was also evaluated. Results were then analyzed and compared to baseline readings (prior to contamination) using repeated measures ANOVA. Biofilm contamination increased the levels of carbon, nitrogen, and live bacteria on titanium surfaces while reducing their open circuit potential and corrosion resistance. Optimized electrochemical treatments with alternating current (-2.3 mA, + 22.5 μA) and voltages (1.8 V), were bactericidal and able to completely decontaminate saliva-contaminated titanium surfaces within 5 min while preserving surface integrity and histological quality of mammalian tissues. Furthermore, with the aid of mechanical brushing, the optimized electrochemical treatment was able to achieve complete decontamination of biofilm-contaminated Ti surfaces. The electrochemical treatment seems to be promising and well worth investigating for the clinical management of peri-implant infections.

摘要

钛植入物上的细菌污染会引发炎症并最终导致植入物失效。目前用于植入物去污的方法成效有限。金属表面可通过电化学方法进行消毒。然而,电化学处理对受生物膜污染的钛的影响在很大程度上尚不清楚。我们推测,电化学处理能够安全地去除钛植入物上的有机污染物和细菌,同时不改变其表面。本研究旨在评估受细菌污染表面的电化学特性,以便开发清洁钛的新方法。在生物膜污染以及随后采用各种电化学方法进行去污之前和之后,分析了抛光钛盘的表面形态、成分、细菌载量和电化学特性。还评估了电化学与钛刷清洁相结合的效果。然后使用重复测量方差分析对结果进行分析,并与基线读数(污染前)进行比较。生物膜污染增加了钛表面的碳、氮含量和活菌数量,同时降低了其开路电位和耐腐蚀性。采用交流电(-2.3 mA,+ 22.5 μA)和电压(1.8 V)的优化电化学处理具有杀菌作用,能够在5分钟内完全去除受唾液污染的钛表面的污染物,同时保持哺乳动物组织的表面完整性和组织学质量。此外,借助机械刷洗,优化后的电化学处理能够实现对受生物膜污染的钛表面的完全去污。电化学处理似乎很有前景,非常值得对种植体周围感染的临床管理进行研究。

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