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骨科植入物接触式和释放型抗菌涂层的当前进展与未来展望:基于体外和体内模型的系统综述分析

Current Progress and Future Perspectives in Contact and Releasing-Type Antimicrobial Coatings of Orthopaedic Implants: A Systematic Review Analysis Emanated from In Vitro and In Vivo Models.

作者信息

Kaspiris Angelos, Vasiliadis Elias, Pantazaka Evangelia, Lianou Ioanna, Melissaridou Dimitra, Savvidis Matthaios, Panagopoulos Fotios, Tsalimas Georgios, Vavourakis Michail, Kolovos Ioannis, Savvidou Olga D, Pneumaticos Spiros G

机构信息

Third Department of Orthopaedic Surgery, School of Medicine, National and Kapodistrian University of Athens, "KAT" General Hospital, Nikis 2, 14561 Athens, Greece.

Synthetic Organic Chemistry Laboratory, Department of Chemistry, University of Patras, 26504 Patras, Greece.

出版信息

Infect Dis Rep. 2024 Mar 26;16(2):298-316. doi: 10.3390/idr16020025.

Abstract

Despite the expanding use of orthopedic devices and the application of strict pre- and postoperative protocols, the elimination of postoperative implant-related infections remains a challenge. To identify and assess the in vitro and in vivo properties of antimicrobial-, silver- and iodine-based implants, as well as to present novel approaches to surface modifications of orthopedic implants. A systematic computer-based review on the development of these implants, on PubMed and Web of Science databases, was carried out according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines. Overall, 31 in vitro and 40 in vivo entries were evaluated. Regarding the in vitro studies, antimicrobial-based coatings were assessed in 12 entries, silver-based coatings in 10, iodine-based in 1, and novel-applied coating technologies in 8 entries. Regarding the in vivo studies, antimicrobial coatings were evaluated in 23 entries, silver-coated implants in 12, and iodine-coated in 1 entry, respectively. The application of novel coatings was studied in the rest of the cases (4). Antimicrobial efficacy was examined using different bacterial strains, and osseointegration ability and biocompatibility were examined in eukaryotic cells and different animal models, including rats, rabbits, and sheep. Assessment of both in vivo and in vitro studies revealed a wide antimicrobial spectrum of the coated implants, related to reduced bacterial growth, inhibition of biofilm formation, and unaffected or enhanced osseointegration, emphasizing the importance of the application of surface modification techniques as an alternative for the treatment of orthopedic implant infections in the clinical settings.

摘要

尽管骨科器械的使用不断增加,且术前和术后都应用了严格的方案,但消除术后植入物相关感染仍然是一项挑战。旨在识别和评估抗菌、含银和含碘植入物的体外和体内特性,并提出骨科植入物表面改性的新方法。根据系统评价和Meta分析的首选报告项目指南,在PubMed和Web of Science数据库上对这些植入物的发展进行了基于计算机的系统综述。总体而言,评估了31项体外研究和40项体内研究。关于体外研究,12项研究评估了抗菌涂层,10项评估了银基涂层,1项评估了碘基涂层,8项评估了新应用的涂层技术。关于体内研究,分别在23项研究中评估了抗菌涂层,12项研究中评估银涂层植入物,1项研究中评估碘涂层植入物。其余病例(4项)研究了新型涂层的应用。使用不同的细菌菌株检查抗菌效果,并在真核细胞和不同的动物模型(包括大鼠、兔子和绵羊)中检查骨整合能力和生物相容性。对体内和体外研究的评估表明,涂层植入物具有广泛的抗菌谱,这与细菌生长减少、生物膜形成抑制以及骨整合不受影响或增强有关,强调了表面改性技术在临床环境中作为治疗骨科植入物感染替代方法的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a23c/11050497/e242aff165c2/idr-16-00025-g001.jpg

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