Fernandez-Moure Joseph S, Evangelopoulos Michael, Colvill Kayla, Van Eps Jeffrey L, Tasciotti Ennio
Center for Biomimetic Medicine, Houston Methodist Research Institute, Houston, TX, USA.
Department of Surgery, Houston Methodist Hospital, Houston, TX, USA.
Nanomedicine (Lond). 2017 Jun;12(11):1319-1334. doi: 10.2217/nnm-2017-0401. Epub 2017 May 18.
Infections following orthopedic device implantations often impose a substantial health burden and result in high medical costs. Currently, preventative methods are often employed following an orthopedic implant to reduce risk of infection; however, contamination of the surgical site can still occur. Although antibiotics have demonstrated a substantial reduction in bacterial growth and maintenance, biofilm formation around the implant can often minimize efficacy of the antibiotic. Recently, nanotechnology has garnered significant interest, resulting in the development of several antibiotic delivery strategies that exhibit extended release and increased efficacy. In this review, treatment methods of orthopedic-device-related infections will be discussed and an overview of antimicrobial-based nanotechnologies will be provided. Specifically, nonmetal-, metal- and oxide-based nanotechnologies, incorporating antibacterial strategies, will be discussed.
骨科器械植入后的感染通常会带来沉重的健康负担,并导致高昂的医疗费用。目前,骨科植入后常采用预防方法以降低感染风险;然而,手术部位仍可能发生污染。尽管抗生素已证明能大幅减少细菌生长并维持疗效,但植入物周围生物膜的形成往往会使抗生素的疗效降至最低。最近,纳米技术引起了广泛关注,催生了几种具有缓释和更高疗效的抗生素递送策略。在本综述中,将讨论骨科器械相关感染的治疗方法,并概述基于抗菌的纳米技术。具体而言,将讨论采用抗菌策略的非金属基、金属基和氧化物基纳米技术。