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Increasing evidence indicates that cells can regulate biochemical functions in time and space by generating membraneless compartments with well‐defined mesoscopic properties. One important mechanism underlying this control is simple coacervation driven by associative disordered proteins that encode multivalent interactions. Inspired by these observations, programmable droplets based on simple coacervation...
Programmable Liquid Droplets
In article number 2104837, Umberto Capasso Palmiero, Paolo Arosio, and co‐workers propose a strategy to produce programmable liquid droplets via liquid–liquid phase separation of associative zwitterionic polymers. With this approach, multiple properties of the droplets, such as composition and stimulus responsiveness, can be finely tuned, opening attractive applications...
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