ACS Applied Materials & Interfaces · 2019 · 28 citations · 39 references
Functional MonomerEngineeringSmart PolymerBiochemistryFunctional SurfaceSurface FunctionalizationResponsive PolymersPolymer ScienceItaconic AcidSmart SurfaceStimulus-responsive Polyzwitterionic Surfacesζ PotentialCell CompatibilityAmphiphilic SystemMicrobiologyMolecular EngineeringPolymer ChemistryBiomolecular Engineering
A functional monomer carrying a carboxylate and a protected primary ammonium group is synthesized from itaconic acid. When copolymerized with dimethyl acrylamide and 4-methacryloyloxybenzophenone, cross-linkable polyzwitterions are obtained. These are converted to surface-attached polyzwitterion networks by simultaneous UV-triggered C,H insertion reactions. The resulting polyzwitterion-coated substrates were studied by surface plasmon resonance spectroscopy measurements, ζ potential and various biological assays. They were (expectedly) protein repellent, yet at the same time (and unexpectedly) cell-adhesive and antimicrobially active. This was attributed to stimulus-responsiveness of the polyzwitterion (confirmed by the ζ potential measurements), which enables charge adjustment at different pH values. When protonated, the polyzwitterions become amphiphilic polycations and, in this state, kill bacteria upon contact like their parent structures (polymer-based synthetic mimics of antimicrobial peptides, SMAMPs).
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Antimicrobial peptides of multicellular organisms
Michael Zasloff · Nature · 2002 · 8.3K citations
Structures and Synthesis of Zwitterionic Polymers
André Laschewsky · Polymers · 2014 · 420 citations · Full text