Compartmentalization by complex coacervation is important across a range of different fields including subcellular and prebiotic organization, biomedicine, food science, and personal care products. Often, lipid self-assemblies such as vesicles are also present intracellularly or in commercial formulations. A systematic understanding of how phospholipid vesicles interact with different complex coacervates could provide insight and improve control over these systems. In this manuscript, anionic phospholipid vesicles were added to a series of different complex coacervate samples in which coacervates were formed by mixing one of five polycations with one of three (poly)anions that varied in chemical structure and length. Vesicles were found to...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Recent work in the area of protein encapsulation has turned away from traditional methods of sequest...
Liquid-liquid phase separation (LLPS), especially coacervation, plays a crucial role in cell biology...
Lipid vesicles (liposomes) are a unique and fascinating type of polymolecular aggregates, obtained f...
Cells organize their interior through membrane-bound organelles and through membraneless condensates...
Complex coacervation refers to the liquid–liquid phase separation (LLPS) process occurring between c...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
Coacervation has emerged as a prevalent mechanism to compartmentalize biomolecules in living cells. ...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Phase separation of aqueous solutions containing polyelectrolytes can lead to formation of dense, so...
Lipids have been known to self-assemble into vesicles for over four decades; a process that has been...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Recent work in the area of protein encapsulation has turned away from traditional methods of sequest...
Liquid-liquid phase separation (LLPS), especially coacervation, plays a crucial role in cell biology...
Lipid vesicles (liposomes) are a unique and fascinating type of polymolecular aggregates, obtained f...
Cells organize their interior through membrane-bound organelles and through membraneless condensates...
Complex coacervation refers to the liquid–liquid phase separation (LLPS) process occurring between c...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
Coacervation has emerged as a prevalent mechanism to compartmentalize biomolecules in living cells. ...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Phase separation of aqueous solutions containing polyelectrolytes can lead to formation of dense, so...
Lipids have been known to self-assemble into vesicles for over four decades; a process that has been...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Recent work in the area of protein encapsulation has turned away from traditional methods of sequest...