Implant infections: adhesion, biofilm formation and immune evasion
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Summary
The fundamental pathogenic mechanisms underlying implant infections are explored, highlighting orthopaedic implants and Staphylococcus aureus as a prime example, and innovative targets for preventive and therapeutic strategies are discussed.
- Type
- review
- Published
- 2018-05-02
- Cited by
- 1,923
- References
- 176
- OpenAlex
- https://openalex.org/W2800171049
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13755401
Keywords
Biofilm, Biology, Implant, Immune system, Microbiology
References
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- Increased production of the extracellular polysaccharide Psl can give a growth advantage to Pseudomonas aeruginosa in low-iron conditions
- Clinical Potential of Immobilized Liquid Interfaces: Perspectives on Biological Interactions.
- Surface treatment strategies to combat implant-related infection from the beginning
- Drug Delivery and Bone Infection.
- Incisional Negative Pressure Wound Therapy for Surgical Site Infection Prophylaxis in the Post-Antibiotic Era
- Magnetic Nanoconjugated Teicoplanin: A Novel Tool for Bacterial Infection Site Targeting
- Pathogenesis and Prevention of Biofilms-The Culprit in Implant Infections.
- Effect of photopolymerized glaze application on bacterial adhesion on ocular acrylic resin surfaces submitted to accelerated ageing
- Topographical alterations render bacterial biofilms susceptible to chemical and mechanical stress.
- Silk-Based Antimicrobial Polymers as a New Platform to Design Drug-Free Materials to Impede Microbial Infections.
- Inhibiting Bacterial Adhesion by Mechanically Modulated Microgel Coatings
- Capsule-Integrated Polypeptide Multilayer Films for Effective pH-Responsive Multiple Drug Co-Delivery
- Cosmetic reconstruction in breast cancer patients: Opportunities for nanocomposite materials.
- In vitro and in vivo bacterial antifouling properties of phosphite plasma-treated silicone
- Advances in atomic force microscopy for single-cell analysis
- La faible densité des groupements hydroxyles de surface explique-t-elle la plus faible adhésion bactérienne sur l’alumine poreuse ?
- Investigations of Anti-Inflammatory Activity of a Peptide-Based Hydrogel Using Rat Air Pouch Model.
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