Compartmentalization of functional biological units, cells, and organelles serves as an inspiration for the development of biomimetic materials with unprecedented properties and applications in biosensing and medicine. Because of the complexity of cells, the design of ideal functional materials remains a challenge. An elegant strategy to obtain cell-like compartments as novel materials with biofunctionality is the combination of synthetic micrometer-sized giant unilamellar vesicles (GUVs) with biomolecules because it enables studying the behavior of biomolecules and processes within confined cavities. Here we introduce a functional cell-mimetic compartment formed by insertion of the model biopore bacterial membrane protein OmpF in thick syn...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Exploring and understanding how the smallest scale features of a cell affect biochemical reactions h...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Despite huge need in the medical domain and significant development efforts, artificial cells to dat...
Nano- and micrometer-sized compartments composed of synthetic polymers are designed to mimic spatial...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
The design of vesicle microsystems as artificial cells (bottom-up synthetic biology) has traditional...
Artificial cells are biomimetic microstructures that mimic functions of natural cells, can be applie...
Despite tremendous efforts to develop stimuli-responsive enzyme delivery systems, their efficacy has...
Chemistry plays a crucial role in creating synthetic analogues of biomacromolecular structures. Of p...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Exploring and understanding how the smallest scale features of a cell affect biochemical reactions h...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Despite huge need in the medical domain and significant development efforts, artificial cells to dat...
Nano- and micrometer-sized compartments composed of synthetic polymers are designed to mimic spatial...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
The design of vesicle microsystems as artificial cells (bottom-up synthetic biology) has traditional...
Artificial cells are biomimetic microstructures that mimic functions of natural cells, can be applie...
Despite tremendous efforts to develop stimuli-responsive enzyme delivery systems, their efficacy has...
Chemistry plays a crucial role in creating synthetic analogues of biomacromolecular structures. Of p...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Bottom-up synthetic cells offer the potential to study cellular processes with reduced complexity. G...
Exploring and understanding how the smallest scale features of a cell affect biochemical reactions h...