Synthetic biology approaches range from the introduction of unique features into organisms to the assembly of isolated biomacromolecules or synthetic building blocks into artificial biological systems with biomimetic or completely novel functionalities. Simple molecular systems can be based on containers on the nanoscale that are equipped with tailored functional modules for various applications in healthcare, industry or biological and medical research. The concept, or vision, of assembling native or engineered proteins and/or synthetic components as functional modules into molecular systems is discussed. The main focus is laid on the engineering of energizing modules generating chemical energy, transport modules using this energy to tra...
Nature is based on complex self-assembling systems that span from the nanoscale to the macroscale. W...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
There is much interest in using biological structures for the fabrication of new functional material...
Synthetic biology approaches range from the introduction of unique features into organisms to the as...
Synthetic biology approaches range from the introduction of unique features into organisms to the as...
The bottom-up assembly of biological and chemical components opens exciting opportunities to enginee...
The bottom-up assembly of biological and chemical components opens exciting opportunities to enginee...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
Polymers and their self-assembled structures constitute an essential part of life: Advances in synth...
Synthetic Biology provides a framework to examine key enabling components in the emerging area of sy...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Biocomplexity—the study of complex structures and behaviours that take place in biological systems—g...
Synthetic biology is a rapidly growing field that has emerged in a global, multidisciplinary effort ...
In the past 20 years protein engineering has been used for the production of proteins mostly for bio...
Nature is based on complex self-assembling systems that span from the nanoscale to the macroscale. W...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
There is much interest in using biological structures for the fabrication of new functional material...
Synthetic biology approaches range from the introduction of unique features into organisms to the as...
Synthetic biology approaches range from the introduction of unique features into organisms to the as...
The bottom-up assembly of biological and chemical components opens exciting opportunities to enginee...
The bottom-up assembly of biological and chemical components opens exciting opportunities to enginee...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
Polymers and their self-assembled structures constitute an essential part of life: Advances in synth...
Synthetic Biology provides a framework to examine key enabling components in the emerging area of sy...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Biocomplexity—the study of complex structures and behaviours that take place in biological systems—g...
Synthetic biology is a rapidly growing field that has emerged in a global, multidisciplinary effort ...
In the past 20 years protein engineering has been used for the production of proteins mostly for bio...
Nature is based on complex self-assembling systems that span from the nanoscale to the macroscale. W...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
There is much interest in using biological structures for the fabrication of new functional material...