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Antibacterial approaches in tissue engineering using metal ions and nanoparticles:From mechanisms to applications

作     者:Maria Godoy-Gallardo Ulrich Eckhard Luis M.Delgado Yolanda J.D.de Roo Puente Mireia Hoyos-Nogués F.Javier Gil Roman A.Perez 

作者机构:Bioengineering Institute of TechnologyUniversitat Internacional de CatalunyaCarrer de Josep Trueta08195del VallèsSant CugatBarcelonaSpain Proteolysis LabDepartment of Structural BiologyMolecular Biology Institute of BarcelonaCSICBarcelona Science ParkBaldiri Reixac 15-2108028BarcelonaSpain 

出 版 物:《Bioactive Materials》 (生物活性材料(英文))

年 卷 期:2021年第6卷第12期

页      面:4470-4490页

核心收录:

学科分类:0831[工学-生物医学工程(可授工学、理学、医学学位)] 08[工学] 0836[工学-生物工程] 

基  金:M.G-G and U.E have received funding from the postdoctoral fellowship programme Beatriu de Pinós,funded by the Secretary of Universities and Research(Government of Catalonia)and by the Horizon 2020 programme of research and innovation of the European Union under the Marie Sklodowska-Curie grant agreement No 801370 R.A.P is supported by the Spanish Ministry by the Ram´on y Cajal Program(RYC2018-025977-I) Additional financial support was provided by the Government of Catalonia(2017 SGR 708)and MINECO/FEDER project(RTI2018-096088-J-100) 

主  题:Metal ions Metal nanoparticles Mechanism of action Antibacterial activity Tissue engineering Biomaterials applications 

摘      要:Bacterial infection of implanted scaffolds may have fatal consequences and,in combination with the emergence of multidrug bacterial resistance,the development of advanced antibacterial biomaterials and constructs is of great *** decades ago,metals and their ions had been used to minimize bacterial infection risk and,more recently,metal-based nanomaterials,with improved antimicrobial properties,have been advocated as a novel and tunable alternative.A comprehensive review is provided on how metal ions and ion nanoparticles have the potential to decrease or eliminate unwanted *** mechanisms such as oxidative stress induction,ion release and disruption of biomolecules are currently well ***,the exact antimicrobial mechanisms of the discussed metal compounds remain poorly *** combination of different metal ions and surface decorations of nanoparticles will lead to synergistic effects and improved microbial killing,and allow to mitigate potential side effects to the *** with a general overview of antibacterial mechanisms,we subsequently focus on specific metal ions such as silver,zinc,copper,iron and gold,and outline their distinct modes of ***,we discuss the use of these metal ions and nanoparticles in tissue engineering to prevent implant failure.

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