Controlling the dynamics of mixed communities of cell-like entities (protocells) provides a step toward the development of higher-order cytomimetic behaviors in artificial cell consortia. In this paper, we develop a caged protocell model with a molecularly crowded coacervate interior surrounded by a non-cross-linked gold (Au)/poly(ethylene glycol) (PEG) nanoparticle-jammed stimuli-responsive membrane. The jammed membrane is unlocked by either exogenous light-mediated Au/PEG dissociation at the Au surface or endogenous enzyme-mediated cleavage of a ketal linkage on the PEG backbone. The membrane assembly/disassembly process is used for the controlled and selective uptake of guest protocells into the caged coacervate microdroplets as a path t...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
A living system profoundly relies on mass, information and energy interactions through cell-cell and...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
Although several strategies are now available to produce functional microcompartments analogous to p...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
As a model protocell, the membrane-free coacervate microdroplet is widely utilized in functional stu...
The spontaneous assembly of micro-compartmentalized colloidal objects capable of controlled interact...
The development of programmable microscale materials with cell-like functions, dynamics and collecti...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
A living system profoundly relies on mass, information and energy interactions through cell-cell and...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
Although several strategies are now available to produce functional microcompartments analogous to p...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
As a model protocell, the membrane-free coacervate microdroplet is widely utilized in functional stu...
The spontaneous assembly of micro-compartmentalized colloidal objects capable of controlled interact...
The development of programmable microscale materials with cell-like functions, dynamics and collecti...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
A living system profoundly relies on mass, information and energy interactions through cell-cell and...