In recent years, there has been growing attention to designing synthetic protocells, capable of mimicking micrometric and multicompartmental structures and highly complex physicochemical and biological processes with spatiotemporal control. Controlling metabolism-like cascade reactions in coacervate protocells is still challenging since signal transduction has to be involved in sequential and parallelized actions mediated by a pH change. Herein, we report the hierarchical construction of membraneless and multicompartmentalized protocells composed of (i) a cytosol-like scaffold based on complex coacervate droplets stable under flow conditions, (ii) enzyme-active artificial organelles and a substrate nanoreservoir capable of triggering a casc...
Artificial cell-like communities participate in diverse modes of chemical interaction but exhibit mi...
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...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...
\u3cp\u3eA systemic feature of eukaryotic cells is the spatial organization of functional components...
The chemical signal communication among organelles in the cell is extremely important for life. We d...
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...
The EU FP6 Integrated Project PACE (\u27Programmable Artificial Cell Evolution\u27) is investigating...
The design and construction of synthetic prototissues from integrated assemblies of artificial proto...
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...
Artificial cell-like communities participate in diverse modes of chemical interaction but exhibit mi...
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...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
Fabrication of compartmentalised chemical systems with nested architectures and biomimetic propertie...
Abstract As the preliminary synthetic analogs of living cells, protocells with life‐like features se...
\u3cp\u3eA systemic feature of eukaryotic cells is the spatial organization of functional components...
The chemical signal communication among organelles in the cell is extremely important for life. We d...
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...
The EU FP6 Integrated Project PACE (\u27Programmable Artificial Cell Evolution\u27) is investigating...
The design and construction of synthetic prototissues from integrated assemblies of artificial proto...
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...
Artificial cell-like communities participate in diverse modes of chemical interaction but exhibit mi...
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...