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dc.contributor.authorFrancolini, Iolanda*
dc.contributor.authorPiozzi, Antonella*
dc.date.accessioned2021-02-11T23:28:43Z
dc.date.available2021-02-11T23:28:43Z
dc.date.issued2020*
dc.date.submitted2020-06-09 16:38:57*
dc.identifier46106*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/56641
dc.description.abstractThe rapid increase in the emergence of antibiotic-resistant bacterial strains, combined with a dwindling rate of discovery of novel antibiotic molecules, has created an alarming issue worldwide. Although the occurrence of resistance in microbes is a natural process, the overuse of antibiotics is known to increase the rate of resistance evolution. Under antibiotic treatment, susceptible bacteria inevitably die, while resistant microorganisms proliferate under reduced competition. Therefore, the out-of-control use of antibiotics eliminates drug-susceptible species that would naturally limit the expansion of resistant species. In addition, the ability of many microbial species to grow as a biofilm has further complicated the treatment of infections with conventional antibiotics. A number of corrective measures are currently being explored to reverse or slow antibiotic resistance evolution, Among which one of the most promising solutions is the development of polymer-based antimicrobial compounds. In this Special Issue, different polymer systems able to prevent or treat biofilm formation, including cationic polymers, antibacterial peptide-mimetic polymers, polymers or composites able to load and release bioactive molecules, and antifouling polymers able to repel microbes by physical or chemical mechanisms are reported. Their applications in the design and fabrication of medical devices, in food packaging, and as drug carriers is investigated.*
dc.languageEnglish*
dc.subjectHM401-1281*
dc.subjectH1-99*
dc.subject.classificationbic Book Industry Communication::J Society & social sciences::JF Society & culture: general::JFF Social issues & processes::JFFP Social interactionen_US
dc.subject.otherimidization*
dc.subject.otherantifouling materials*
dc.subject.othern/a*
dc.subject.otherUV-induced polymerization*
dc.subject.other2-hydroxyethyl methacrylate*
dc.subject.otheradditive manufacturing*
dc.subject.otherantimicrobial resistance*
dc.subject.otherbiofilm*
dc.subject.otherantibacterial peptides*
dc.subject.otherocular infections*
dc.subject.otherfood shelf-life*
dc.subject.otherhemolytic activity*
dc.subject.otherpolyamide 11*
dc.subject.othercoatings from nanoparticles*
dc.subject.otherpolymeric surfaces*
dc.subject.othermicrobial biofilm*
dc.subject.other?-chymotrypsin*
dc.subject.otherantimicrobial properties*
dc.subject.otherlinear low-density polyethylene*
dc.subject.otherdrug delivery systems*
dc.subject.otherESKAPE pathogens*
dc.subject.otherhalictine*
dc.subject.othercomposites*
dc.subject.otherfoodborne pathogens*
dc.subject.otherlayered double hydroxides*
dc.subject.othercuprous oxide nanoparticles*
dc.subject.othermultifunctional hybrid systems*
dc.subject.othermicrobicidal coatings*
dc.subject.otheradhesives*
dc.subject.otheracrylates*
dc.subject.otherquaternization*
dc.subject.otherpolymeric biocide*
dc.subject.otherbiocompatible polymer*
dc.subject.othersurface functionalization*
dc.subject.othersol-gel preparation*
dc.subject.otherantifouling*
dc.subject.otherantimicrobial peptides*
dc.subject.otherpolymerizable quaternary ammonium salts*
dc.subject.otherantibiofilm activity*
dc.subject.otherpolymeric films*
dc.subject.otherantibacterial activity*
dc.subject.otherbionanocomposites*
dc.subject.othercationic polymers*
dc.subject.otherEscherichia coli*
dc.subject.otherantibacterial*
dc.subject.otherbiofilm methods*
dc.subject.otherdrug delivery*
dc.subject.othercircular dichroism*
dc.subject.othercoatings wettability*
dc.subject.otherantimicrobial polymers*
dc.subject.otherfluorescence*
dc.subject.otherStaphylococcus aureus*
dc.subject.otherbiofilm analysis*
dc.subject.otherpolyethylene glycol*
dc.subject.othercopolymerization*
dc.subject.otherdynamic light scattering*
dc.subject.otherphysiological salt*
dc.subject.othercopper paint*
dc.subject.othermedical device-related infections*
dc.subject.otherolive mill wastewater*
dc.subject.otherAcinetobacter baumannii*
dc.subject.otheranti-biofilm surface*
dc.subject.otheradditives*
dc.subject.otherperiodontitis*
dc.subject.otherperiodontal biofilms*
dc.subject.otherantimicrobial peptide*
dc.subject.othersegmented polyurethanes*
dc.subject.otherplastic materials*
dc.subject.otherbiocompatible systems*
dc.subject.otherbactericidal coatings*
dc.subject.otherbacteria viability*
dc.subject.otherwound dressings*
dc.subject.otherordered mesoporous silica*
dc.subject.otherquaternary ammonium*
dc.subject.othermultidrug-resistant*
dc.subject.otherantimicrobial polymer*
dc.subject.otherbiofilm devices*
dc.subject.otherbiofilm on contact lenses*
dc.subject.otherwater disinfection*
dc.subject.otheramorphous materials*
dc.subject.otherpolymers*
dc.subject.otherinfrared spectroscopy*
dc.subject.otherquaternary ammonium salts*
dc.subject.otherlipopeptides*
dc.subject.otherantibacterial properties*
dc.subject.otherthermal stability*
dc.subject.otherproteinase*
dc.subject.otheractive packaging*
dc.subject.otherantibacterial polymers*
dc.subject.otheranti-biofilm surfaces*
dc.subject.other3D printing*
dc.subject.otherdrug carrier*
dc.subject.otherpersister cells*
dc.titlePolymeric Systems as Antimicrobial or Antifouling Agents*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-457-3*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039284573*
oapen.relation.isbn9783039284566*
oapen.pages400*
oapen.edition1st*


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