Bacterial Efflux Pump (2D): Antibiotic Extrusion Simulator
Interactive 2D cross-section model of RND-family multidrug efflux pumps (AcrAB-TolC-style) actively expelling antibiotic molecules from a bacterial cell against a diffusion gradient. Tune external drug concentration, pump density, turnover rate and membrane permeability and watch intracellular concentration settle to a Michaelis-Menten steady state, with live concentration and kinetics charts.
Multidrug efflux pumps are one of the most common — and least visible — resistance mechanisms in Gram-negative bacteria: no mutation to the antibiotic's target and no enzyme that destroys the drug, just an active transporter complex spanning both membranes that ejects the molecule as fast as it diffuses in. This 2D cross-section simulator models a population of antibiotic molecules diffusing across a bacterial cell membrane while a tunable number of RND-family pumps (modelled on AcrAB-TolC) actively extrude them via Michaelis-Menten kinetics powered by the proton-motive force. Adjust external drug concentration, membrane permeability, pump count and turnover rate and watch the intracellular concentration converge to a steady state — below or above the lethal threshold — on the live concentration and kinetics charts, exactly as it would inside a real efflux-overexpressing clinical isolate.
Interactive 2D cross-section model of RND-family multidrug efflux pumps (AcrAB-TolC-style) actively expelling antibiotic molecules from a bacterial cell against a diffusion gradient. Tune external drug concentration, pump density, turnover rate and membrane permeability and watch intracellular concentration settle to a Michaelis-Menten steady state, with live concentration and kinetics charts.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install