Brum Renata Scheeren, Labes Luiza Gomes, Volpato Cláudia Ângela Maziero, Benfatti César Augusto Magalhães, Pimenta Andrea de Lima
Center for Research on Dental Implants (CEPID), Dentistry Department (ODT), Federal University of Santa Catarina (UFSC), Rua Delfino Conti, 1240, Campus Universitário-Trindade, Florianópolis SC 88036-020, Brazil.
Integrated Laboratories Technologies (InteLab), Department Chemical Engineering (EQA), Federal University of Santa Catarina (UFSC), Florianópolis SC 88040-970, Brazil.
Antibiotics (Basel). 2020 Sep 16;9(9):609. doi: 10.3390/antibiotics9090609.
Polyether-ether-ketone (PEEK) has emerged in Implant Dentistry with a series of short-time applications and as a promising material to substitute definitive dental implants. Several strategies have been investigated to diminish biofilm formation on the PEEK surface aiming to decrease the possibility of related infections. Therefore, a comprehensive review was carried out in order to compare PEEK with materials widely used nowadays in Implant Dentistry, such as titanium and zirconia, placing emphasis on studies investigating its ability to grant or prevent biofilm formation. Most studies failed to reveal significant antimicrobial activity in pure PEEK, while several studies described new strategies to reduce biofilm formation and bacterial colonization on this material. Those include the PEEK sulfonation process, incorporation of therapeutic and bioactive agents in PEEK matrix or on PEEK surface, PEEK coatings and incorporation of reinforcement agents, in order to produce nanocomposites or blends. The two most analyzed surface properties were contact angle and roughness, while the most studied bacteria were and . Despite PEEK's susceptibility to biofilm formation, a great number of strategies discussed in this study were able to improve its antibiofilm and antimicrobial properties.
聚醚醚酮(PEEK)已在种植牙科领域崭露头角,有一系列短期应用,并且是替代确定性牙种植体的一种有前景的材料。人们已经研究了多种策略来减少PEEK表面的生物膜形成,旨在降低相关感染的可能性。因此,进行了一项全面综述,以便将PEEK与目前种植牙科广泛使用的材料(如钛和氧化锆)进行比较,重点关注研究其促进或防止生物膜形成能力的研究。大多数研究未能揭示纯PEEK具有显著的抗菌活性,而一些研究描述了减少该材料上生物膜形成和细菌定植的新策略。这些策略包括PEEK磺化过程、在PEEK基体或表面掺入治疗剂和生物活性剂、PEEK涂层以及掺入增强剂,以制备纳米复合材料或共混物。分析最多的两个表面性质是接触角和粗糙度,而研究最多的细菌是[此处原文缺失细菌名称]和[此处原文缺失细菌名称]。尽管PEEK易形成生物膜,但本研究中讨论的大量策略能够改善其抗生物膜和抗菌性能。