Michigan State University College of Human Medicine , Grand Rapids, MI , USA.
Western Michigan University Homer Stryker MD School of Medicine , Kalamazoo, MI , USA.
Front Med (Lausanne). 2014 Aug 15;1:22. doi: 10.3389/fmed.2014.00022. eCollection 2014.
The use of orthopedic implants in joints has revolutionized the treatment of patients with many debilitating chronic musculoskeletal diseases such as osteoarthritis. However, the introduction of foreign material into the human body predisposes the body to infection. The treatment of these infections has become very complicated since the orthopedic implants serve as a surface for multiple species of bacteria to grow at a time into a resistant biofilm layer. This biofilm layer serves as a protectant for the bacterial colonies on the implant making them more resistant and difficult to eradicate when using standard antibiotic treatment. In some cases, the use of antibiotics alone has even made the bacteria more resistant to treatment. Thus, there has been surge in the creation of non-antibiotic anti-biofilm agents to help disrupt the biofilms on the orthopedic implants to help eliminate the infections. In this study, we discuss infections of orthopedic implants in the shoulder then we review the main categories of anti-biofilm agents that have been used for the treatment of infections on orthopedic implants. Then, we introduce some of the newer biofilm disrupting technology that has been studied in the past few years that may advance the treatment options for orthopedic implants in the future.
骨科植入物在关节中的应用彻底改变了许多使人衰弱的慢性肌肉骨骼疾病(如骨关节炎)患者的治疗方法。然而,将异物引入人体会使人体容易感染。由于骨科植入物是多种细菌同时生长的耐药生物膜层的表面,因此这些感染的治疗变得非常复杂。生物膜层作为植入物上细菌菌落的保护层,使其更具耐药性,并且在使用标准抗生素治疗时更难以消除。在某些情况下,单独使用抗生素甚至会使细菌对治疗更具耐药性。因此,人们大量开发非抗生素抗生物膜剂来帮助破坏骨科植入物上的生物膜,以帮助消除感染。在这项研究中,我们讨论了肩部骨科植入物的感染,然后回顾了用于治疗骨科植入物感染的主要类别的抗生物膜剂。然后,我们介绍了过去几年中研究过的一些较新的生物膜破坏技术,这些技术可能会为未来的骨科植入物治疗提供更多选择。