Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to their c-ytomimetic properties. However, their intrinsic membrane-free nature results in instability that limits their application in protocell research. Herein, we present the development of a new protocell model through the spontaneous interfacial self-assembly of copolymer molecules on biopolymer coacervate microdroplets. This hierarchical protocell model not only incorporates the favorable properties of coacervates (such as spontaneous assembly and macromolecular condensation) but also assimilates the essential features of a semipermeable copolymeric membrane (such as discretization and stabilization). This was accomplished by engineering...
The utilization of liquid-liquid phase separated systems has seen increased attention as synthetic c...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
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...
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...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
The utilization of liquid-liquid phase separated systems has seen increased attention as synthetic c...
The utilization of liquid-liquid phase separated systems has seen increased attention as synthetic c...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
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...
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...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
The utilization of liquid-liquid phase separated systems has seen increased attention as synthetic c...
The utilization of liquid-liquid phase separated systems has seen increased attention as synthetic c...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...