We report on the formation of surfactant-based complex catanionic coacervate droplets in mixtures of decanoic acid and cetylpyridinium chloride or cetyltrimethylammonium bromide. We show that coacervation occurs over a broad range of composition, pH, and ionic strength. The catanionic coacervates consist of elongated micelles, sequester a wide range of solutes including water-soluble organic dyes, polysaccharides, proteins, enzymes, and DNA, and can be structurally stabilized by sodium alginate or gelatin-based hydrogelation. These results suggest that catanionic coacervates could be exploited as a novel surfactant-based membrane- free protocell model
Micelles are commonly regarded as colloidal structures spontaneously formed by amphiphilic molecules...
Polyelectrolyte/nucleotide multiphase complex coacervate droplets are produced by internalized aqueo...
Phase separation of aqueous solutions containing polyelectrolytes can lead to formation of dense, so...
We report on the formation of surfactant-based complex catanionic coacervate droplets in mixtures of...
International audienceComplex coacervation of polyelectrolytes with surfactant micelles is a promisi...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
The chemical principles behind many vital processes are an open question in science. Be it to unders...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
Recent developments suggest that the phase transition of natural and synthetic biomacromolecules rep...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
In this paper, the preparation and characterization of an anionic and a cationic surfactant obtained...
Coacervation has emerged as a prevalent mechanism to compartmentalize biomolecules in living cells. ...
We show here the influence of n-alcs. (C2OH-C8OH) on the soly. behavior of cationic-anionic surfacta...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Micelles are commonly regarded as colloidal structures spontaneously formed by amphiphilic molecules...
Polyelectrolyte/nucleotide multiphase complex coacervate droplets are produced by internalized aqueo...
Phase separation of aqueous solutions containing polyelectrolytes can lead to formation of dense, so...
We report on the formation of surfactant-based complex catanionic coacervate droplets in mixtures of...
International audienceComplex coacervation of polyelectrolytes with surfactant micelles is a promisi...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
The chemical principles behind many vital processes are an open question in science. Be it to unders...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
Recent developments suggest that the phase transition of natural and synthetic biomacromolecules rep...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
In this paper, the preparation and characterization of an anionic and a cationic surfactant obtained...
Coacervation has emerged as a prevalent mechanism to compartmentalize biomolecules in living cells. ...
We show here the influence of n-alcs. (C2OH-C8OH) on the soly. behavior of cationic-anionic surfacta...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Micelles are commonly regarded as colloidal structures spontaneously formed by amphiphilic molecules...
Polyelectrolyte/nucleotide multiphase complex coacervate droplets are produced by internalized aqueo...
Phase separation of aqueous solutions containing polyelectrolytes can lead to formation of dense, so...