Litcius/Paper detail

Synthetic Star Nanoengineered Antimicrobial Polymers as Antibiofilm Agents: Bacterial Membrane Disruption and Cell Aggregation

Sophie Laroque, Ramón Garcia Maset, Alexia Hapeshi, Fannie Burgevin, Katherine E. S. Locock, Sébastien Perrier

2023Biomacromolecules43 citationsDOIOpen Access PDF

Abstract

High Resolution Image Download MS PowerPoint Slide Antimicrobial resistance has become a worldwide issue, with multiresistant bacterial strains emerging at an alarming rate. Multivalent antimicrobial polymer architectures such as bottle brush or star polymers have shown great potential, as they could lead to enhanced binding and interaction with the bacterial cell membrane. In this study, a library of amphiphilic star copolymers and their linear copolymer equivalents, based on acrylamide monomers, were synthesized via RAFT polymerization. Their monomer distribution and molecular weight were varied. Subsequently, their antimicrobial activity toward a Gram-negative bacterium ( Pseudomonas aeruginosa PA14) and a Gram-positive bacterium ( Staphylococcus aureus USA300) and their hemocompatibility were investigated. The statistical star copolymer, S-SP25, showed an improved antimicrobial activity compared to its linear equivalent against P. aeruginosa PA14. The star architecture enhanced its antimicrobial activity, causing bacterial cell aggregation, as revealed via electron microscopy. However, it also induced increased red blood cell aggregation compared to its linear equivalents. Changing/shifting the position of the cationic block to the core of the structure prevents the cell aggregation effect while maintaining a potent antimicrobial activity for the smallest star copolymer. Finally, this compound showed antibiofilm properties against a robust in vitro biofilm model.

Topics & Concepts

AntimicrobialChemistryAmphiphileCopolymerMonomerBiofilmCationic polymerizationBacterial cell structurePolymerPolymer chemistryBacteriaOrganic chemistryBiologyGeneticsAntimicrobial agents and applicationsAntimicrobial Peptides and ActivitiesBacterial biofilms and quorum sensing
Synthetic Star Nanoengineered Antimicrobial Polymers as Antibiofilm Agents: Bacterial Membrane Disruption and Cell Aggregation | Litcius