A systemic feature of eukaryotic cells is the spatial organization of functional components through compartmentalization. Developing protocells with compartmentalized synthetic organelles is, therefore, a critical milestone toward emulating one of the core characteristics of cellular life. Here we demonstrate the bottom-up, multistep, noncovalent, assembly of rudimentary subcompartmentalized protocells through the spontaneous encapsulation of semipermeable, polymersome proto-organelles inside cell-sized coacervates. The coacervate microdroplets are membranized using tailor-made terpolymers, to complete the hierarchical self-assembly of protocells, a system that mimics both the condensed cytosol and the structure of a cell membrane. In this ...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
Despite the low complexity of their components, several simple physical systems, including microsphe...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
Controlling the dynamics of mixed communities of cell-like entities (protocells) provides a step tow...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
As a model protocell, the membrane-free coacervate microdroplet is widely utilized in functional stu...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
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...
Over recent years, the investigation of protocells (here intended either as primitive cell models, e...
A living system profoundly relies on mass, information and energy interactions through cell-cell and...
Artificial cells are minimal structures constructed from biomolecular building blocks designed to mi...
Despite the low complexity of their components, several simple physical systems, including microsphe...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
Despite the low complexity of their components, several simple physical systems, including microsphe...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...
A systemic feature of eukaryotic cells is the spatial organization of functional components through ...
Complex coacervate microdroplets are finding increased utility in synthetic cell applications due to...
Controlling the dynamics of mixed communities of cell-like entities (protocells) provides a step tow...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
As a model protocell, the membrane-free coacervate microdroplet is widely utilized in functional stu...
Although complex coacervate microdroplets derived from associative phase separation of counter-charg...
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...
Over recent years, the investigation of protocells (here intended either as primitive cell models, e...
A living system profoundly relies on mass, information and energy interactions through cell-cell and...
Artificial cells are minimal structures constructed from biomolecular building blocks designed to mi...
Despite the low complexity of their components, several simple physical systems, including microsphe...
The bottom-up construction of cell mimics has produced a range of membrane-bound protocells that hav...
Despite the low complexity of their components, several simple physical systems, including microsphe...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...