Fabrication of compartmentalised chemical systems with nested architectures and biomimetic properties has important implications for controlling the positional assembly of functional components, spatiotemporal regulation of enzyme cascades and modelling of proto-organelle behaviour in synthetic protocells. Here, we describe the spontaneous capture of glucose oxidase-containing proteinosomes in pH-sensitive fatty acid micelle coacervate droplets as a facile route to multi-compartmentalised host-guest protocells capable of antagonistic chemical and structural coupling. The nested system functions co-operatively at low-substrate turnover, while high levels of glucose give rise to pH-induced disassembly of the droplets, release of the incarcera...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
It is of great fundamental interest to develop experimental model systems to reconstruct design prin...
Biomolecular condensates are small droplets forming spontaneously in biological cells through phase ...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
\u3cp\u3eA systemic feature of eukaryotic cells is the spatial organization of functional components...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...
In recent years, there has been growing attention to designing synthetic protocells, capable of mimi...
As a model protocell, the membrane-free coacervate microdroplet is widely utilized in functional stu...
Controlling the dynamics of mixed communities of cell-like entities (protocells) provides a step tow...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
It is of great fundamental interest to develop experimental model systems to reconstruct design prin...
Biomolecular condensates are small droplets forming spontaneously in biological cells through phase ...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
\u3cp\u3eA systemic feature of eukaryotic cells is the spatial organization of functional components...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...
In recent years, there has been growing attention to designing synthetic protocells, capable of mimi...
As a model protocell, the membrane-free coacervate microdroplet is widely utilized in functional stu...
Controlling the dynamics of mixed communities of cell-like entities (protocells) provides a step tow...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
The prebiotic organization of chemicals into compartmentalized ensembles is an essential step to und...
It is of great fundamental interest to develop experimental model systems to reconstruct design prin...
Biomolecular condensates are small droplets forming spontaneously in biological cells through phase ...