Although synthetic cationic polymers represent a promising class of effective antibacterial agents, the molecular mechanisms behind their antimicrobial activity remain poorly understood. To this end, we employ atomic-scale molecular dynamics simulations to explore adsorption of several linear cationic polymers of different chemical structure and protonation (polyallylamine (PAA), polyethylenimine (PEI), polyvinylamine (PVA), and poly-l-lysine (PLL)) on model bacterial membranes (4:1 mixture of zwitterionic phosphatidylethanolamine (PE) and anionic phosphatidylglycerol (PG) lipids). Overall, our findings show that binding of polycations to the anionic membrane surface effectively neutralizes its charge, leading to the reorientation of water ...
Polyanion-coated lipid vesicles are proposed to have an appreciable potential for drug delivery beca...
AbstractBoth natural and synthetic polycations can induce demixing of negatively charged components ...
AbstractFluid membranes containing charged lipids enhance binding of oppositely charged proteins by ...
Monte Carlo simulations are employed to investigate the adsorption of a flexible linear cationic pol...
Monte Carlo simulations are employed to investigate the adsorption of a flexible linear cationic pol...
International audienceThe interactions between synthetic polycations and phospholipid bilayers play ...
The interactions between synthetic polycations and phospho- lipid bilayers play an important role i...
The molecular interaction between common polymer chains and the cell membrane is unknown. Molecular ...
Polycations are an attractive class of macromolecules with promising applications as drug/gene carri...
We apply Monte Carlo simulation to explore the adsorption of a positively charged polyelectrolyte on...
Polycations are an attractive class of macromolecules with promising applications as drug/gene carri...
The interaction between polymers and biological membranes has recently gained significant interest i...
In this paper, we present a computational model of the adsorption and percolation mechanism of polox...
Naturally occurring linear polyamines are known to enable bacteria to be resistant to cationic membr...
In this paper, we present a computational model of the adsorption and percolation mechanism of polox...
Polyanion-coated lipid vesicles are proposed to have an appreciable potential for drug delivery beca...
AbstractBoth natural and synthetic polycations can induce demixing of negatively charged components ...
AbstractFluid membranes containing charged lipids enhance binding of oppositely charged proteins by ...
Monte Carlo simulations are employed to investigate the adsorption of a flexible linear cationic pol...
Monte Carlo simulations are employed to investigate the adsorption of a flexible linear cationic pol...
International audienceThe interactions between synthetic polycations and phospholipid bilayers play ...
The interactions between synthetic polycations and phospho- lipid bilayers play an important role i...
The molecular interaction between common polymer chains and the cell membrane is unknown. Molecular ...
Polycations are an attractive class of macromolecules with promising applications as drug/gene carri...
We apply Monte Carlo simulation to explore the adsorption of a positively charged polyelectrolyte on...
Polycations are an attractive class of macromolecules with promising applications as drug/gene carri...
The interaction between polymers and biological membranes has recently gained significant interest i...
In this paper, we present a computational model of the adsorption and percolation mechanism of polox...
Naturally occurring linear polyamines are known to enable bacteria to be resistant to cationic membr...
In this paper, we present a computational model of the adsorption and percolation mechanism of polox...
Polyanion-coated lipid vesicles are proposed to have an appreciable potential for drug delivery beca...
AbstractBoth natural and synthetic polycations can induce demixing of negatively charged components ...
AbstractFluid membranes containing charged lipids enhance binding of oppositely charged proteins by ...