Grischke Jasmin, Eberhard Jörg, Stiesch Meike
Department of Prosthetic Dentistry and Biomedical Materials Science, Hannover Medical School.
Dent Mater J. 2016;35(4):545-58. doi: 10.4012/dmj.2015-314.
Biofilm formation on dental implant surfaces is a serious threat. Up to 50% of all implants show signs of irreversible tissue destruction. The aim of the present systematic review was to summarize the state of the art of strategies to functionalize antimicrobial dental implant surfaces. We searched the following electronic database: SCOPUS, MEDLINE and GOOGLE SCHOLAR and identified relevant controlled trials that evaluated the efficiency of new biomaterial strategies to modify dental implant surfaces, in such a way that biofilm formation was inhibited. The search yielded 2,990 potentially relevant publications. A total of 142 publications met the inclusion criteria. Analysis found that it may be concluded that silver-implanted surfaces, drug-loaded surfaces, surfaces with antimicrobial peptides, bioactive and biopassive polymer coatings as well as nanoscale or UV-activatable surfaces enhance antimicrobial activity compared to commercial pure titanium.
牙种植体表面生物膜的形成是一个严重威胁。所有植入物中高达50%显示出不可逆组织破坏的迹象。本系统评价的目的是总结抗菌牙种植体表面功能化策略的现状。我们检索了以下电子数据库:SCOPUS、MEDLINE和谷歌学术,并确定了相关对照试验,这些试验评估了新生物材料策略修饰牙种植体表面的效率,从而抑制生物膜形成。检索结果有2990篇潜在相关出版物。共有142篇出版物符合纳入标准。分析发现,可以得出结论,与商业纯钛相比,银植入表面、载药表面、具有抗菌肽的表面、生物活性和生物惰性聚合物涂层以及纳米级或紫外线可激活表面可增强抗菌活性。