Biofilms contribute to persistent bacterial infections as well as formidable resistances to conventional antibiotics. However, it is still a major challenge to establish an advanced antibacterial nanoplatform that can efficiently eradicate biofilms while overcoming bacterial resistances. Taking advantage of the stimuli-responsive technique and the magnetic guidance strategy, here we present a highly efficient nanoplatform for planktonic inactivation and biofilm disruption. The multilayer films consisting of antibiotic gentamicin (Gen), tannic acid, and silver nanoparticles (AgNPs) were fabricated and coated on magnetic nanoparticles via electrostatic interactions. To achieve controlled drug release and improved biocompatibility, biodegradab...
Biofilms on biomaterial implants are hard to eradicate with antibiotics due to the protection offere...
Biomaterial-associated infections can occur any time after surgical implantation of biomaterial impl...
Bacterial biofilms are highly antibiotic resistant microbial cell associations that lead to chronic ...
Decades of antibiotic use and misuse have generated selective pressure toward the rise of antibiotic...
The need of new strategies to treat biofilm infections is urgent. Infections caused by antimicrobial...
Magnetic, antimicrobial-carrying nanoparticles provide a promising, new and direly needed antimicrob...
Magnetic targeting of antimicrobial-loaded magnetic nanoparticles to micrometer-sized infectious bio...
The poor penetrability of many biofilms contributes to the recalcitrance of infectious biofilms to a...
A crucial challenge to face in the treatment of biofilm-associated infection is the ability of bacte...
Pathogenic biofilms are associated with the chronicity of infectious diseases and are difficult to t...
Biofilms are the reason for a vast majority of chronic inflammation cases and most acute inflammatio...
Biofilms on biomaterial implants are hard to eradicate with antibiotics due to the protection offere...
Biomaterial-associated infections can occur any time after surgical implantation of biomaterial impl...
Bacterial biofilms are highly antibiotic resistant microbial cell associations that lead to chronic ...
Decades of antibiotic use and misuse have generated selective pressure toward the rise of antibiotic...
The need of new strategies to treat biofilm infections is urgent. Infections caused by antimicrobial...
Magnetic, antimicrobial-carrying nanoparticles provide a promising, new and direly needed antimicrob...
Magnetic targeting of antimicrobial-loaded magnetic nanoparticles to micrometer-sized infectious bio...
The poor penetrability of many biofilms contributes to the recalcitrance of infectious biofilms to a...
A crucial challenge to face in the treatment of biofilm-associated infection is the ability of bacte...
Pathogenic biofilms are associated with the chronicity of infectious diseases and are difficult to t...
Biofilms are the reason for a vast majority of chronic inflammation cases and most acute inflammatio...
Biofilms on biomaterial implants are hard to eradicate with antibiotics due to the protection offere...
Biomaterial-associated infections can occur any time after surgical implantation of biomaterial impl...
Bacterial biofilms are highly antibiotic resistant microbial cell associations that lead to chronic ...