Literature DB >> 26724454

Biomaterials approaches to treating implant-associated osteomyelitis.

Jason A Inzana1, Edward M Schwarz2, Stephen L Kates3, Hani A Awad2.   

Abstract

Orthopaedic devices are the most common surgical devices associated with implant-related infections and Staphylococcus aureus (S. aureus) is the most common causative pathogen in chronic bone infections (osteomyelitis). Treatment of these chronic bone infections often involves combinations of antibiotics given systemically and locally to the affected site via a biomaterial spacer. The gold standard biomaterial for local antibiotic delivery against osteomyelitis, poly(methyl methacrylate) (PMMA) bone cement, bears many limitations. Such shortcomings include limited antibiotic release, incompatibility with many antimicrobial agents, and the need for follow-up surgeries to remove the non-biodegradable cement before surgical reconstruction of the lost bone. Therefore, extensive research pursuits are targeting alternative, biodegradable materials to replace PMMA in osteomyelitis applications. Herein, we provide an overview of the primary clinical treatment strategies and emerging biodegradable materials that may be employed for management of implant-related osteomyelitis. We performed a systematic review of experimental biomaterials systems that have been evaluated for treating established S. aureus osteomyelitis in an animal model. Many experimental biomaterials were not decisively more efficacious for infection management than PMMA when delivering the same antibiotic. However, alternative biomaterials have reduced the number of follow-up surgeries, enhanced the antimicrobial efficacy by delivering agents that are incompatible with PMMA, and regenerated bone in an infected defect. Understanding the advantages, limitations, and potential for clinical translation of each biomaterial, along with the conditions under which it was evaluated (e.g. animal model), is critical for surgeons and researchers to navigate the plethora of options for local antibiotic delivery.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Antibiotics; Biomaterials; Drug delivery; Osteomyelitis; Staphylococcus aureus

Mesh:

Substances:

Year:  2015        PMID: 26724454      PMCID: PMC4745119          DOI: 10.1016/j.biomaterials.2015.12.012

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  148 in total

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  52 in total

Review 1.  Emerging technologies for long-term antimicrobial device coatings: advantages and limitations.

Authors:  Erika L Cyphert; Horst A von Recum
Journal:  Exp Biol Med (Maywood)       Date:  2017-01-01

2.  Bacteriophage delivering hydrogels reduce biofilm formation in vitro and infection in vivo.

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3.  CORR Insights®: One-stage Revision With Catheter Infusion of Intraarticular Antibiotics Successfully Treats Infected THA.

Authors:  Antonia F Chen
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4.  One-stage exchange with antibacterial hydrogel coated implants provides similar results to two-stage revision, without the coating, for the treatment of peri-prosthetic infection.

Authors:  Nicola Capuano; Nicola Logoluso; Enrico Gallazzi; Lorenzo Drago; Carlo Luca Romanò
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2018-03-16       Impact factor: 4.342

5.  A Hyaluronic Acid Hydrogel Loaded with Gentamicin and Vancomycin Successfully Eradicates Chronic Methicillin-Resistant Staphylococcus aureus Orthopedic Infection in a Sheep Model.

Authors:  Willemijn Boot; Tanja Schmid; Matteo D'Este; Olivier Guillaume; Andrew Foster; Laurent Decosterd; Robert G Richards; David Eglin; Stephan Zeiter; Thomas F Moriarty
Journal:  Antimicrob Agents Chemother       Date:  2021-03-18       Impact factor: 5.191

6.  CORR Insights®: What Are the Effects of Irreversible Electroporation on a Staphylococcus aureus Rabbit Model of Osteomyelitis?

Authors:  Jessica Amber Jennings
Journal:  Clin Orthop Relat Res       Date:  2019-10       Impact factor: 4.176

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Authors:  D C Coraça-Huber; M Nogler; K-D Kühn
Journal:  Orthopade       Date:  2018-01       Impact factor: 1.087

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Journal:  Expert Rev Anti Infect Ther       Date:  2017-09-01       Impact factor: 5.091

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Authors:  Ahmed Abdel Badie; Mohamed S Arafa
Journal:  Int Orthop       Date:  2018-07-19       Impact factor: 3.075

Review 10.  Nanoparticle-based local antimicrobial drug delivery.

Authors:  Weiwei Gao; Yijie Chen; Yue Zhang; Qiangzhe Zhang; Liangfang Zhang
Journal:  Adv Drug Deliv Rev       Date:  2017-09-20       Impact factor: 15.470

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