Here we present three different types of mechanically stable nanometer-sized hollow capsules. The common point of the currently developed systems in our laboratory is that they are liposome based. Biomolecules can be used to functionalize lipid vesicles to create a new type of intelligent material. For example, insertion of membrane channels into the capsule wall can modify the permeability. Covalent binding of antibodies allows targeting of the capsule to specific sites. Liposomes loaded with enzymes may provide an optimal environment for them with respect to the maximal turnover and may stabilize the enzyme. However, the main drawback of liposomes is their instability in biological media as well as their sensitivity to many external param...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
We present an approach to fabricate solid capsules with precise control of size, permeability, mecha...
Advanced mimics of cells require a large yet controllable number of subcompartments encapsulated wit...
Abstract—Here we present three different types of mechanically stable nanometer-sized hollow capsule...
Uses of enzymes for therapeutic purpose or for biosensing require a well-controlled nanoenvironnemen...
In recent years, innovative drug nanocarriers have been developed to enhance stability, bioavailabil...
In recent years, innovative drug nanocarriers have been developed to enhance stability, bioavailabil...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
In recent years, innovative drug nanocarriers have been developed to enhance stability, bioavailabil...
The impetuous development of nanotechnology over the past two decades has enabled the production of ...
Liposomes are artificially constructed spherical lipid vesicles with a small size, whose controllabl...
The design of compartmentalized carriers for advanced drug delivery systems or artificial cells and ...
One strategy in modern medicine is the development of new platforms that combine multifunctional com...
We present an approach to fabricate solid capsules with precise control of size, permeability, mecha...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
We present an approach to fabricate solid capsules with precise control of size, permeability, mecha...
Advanced mimics of cells require a large yet controllable number of subcompartments encapsulated wit...
Abstract—Here we present three different types of mechanically stable nanometer-sized hollow capsule...
Uses of enzymes for therapeutic purpose or for biosensing require a well-controlled nanoenvironnemen...
In recent years, innovative drug nanocarriers have been developed to enhance stability, bioavailabil...
In recent years, innovative drug nanocarriers have been developed to enhance stability, bioavailabil...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
In recent years, innovative drug nanocarriers have been developed to enhance stability, bioavailabil...
The impetuous development of nanotechnology over the past two decades has enabled the production of ...
Liposomes are artificially constructed spherical lipid vesicles with a small size, whose controllabl...
The design of compartmentalized carriers for advanced drug delivery systems or artificial cells and ...
One strategy in modern medicine is the development of new platforms that combine multifunctional com...
We present an approach to fabricate solid capsules with precise control of size, permeability, mecha...
Compartmentalized systems produced via the layer-by-layer (LbL) self-assembly method have been produ...
We present an approach to fabricate solid capsules with precise control of size, permeability, mecha...
Advanced mimics of cells require a large yet controllable number of subcompartments encapsulated wit...