The virus-like particle (VLP) of the Cowpea Chlorotic Mottle Virus (CCMV) has often been used to encapsulate foreign cargo. Here we show two different rational design approaches, covalent and noncovalent, for loading teal fluorescent proteins (TFP) into the VLP. The covalent loading approach allows us to gain control over capsid loading on a molecular level. The achieved loading control is used to accurately predict the loading of cargo into CCMV VLP. The effects of molecular confinement were compared for the differently loaded VLPs created with the covalent method. We see that the loading of more than 10 fluorescent proteins in the 18 nm internal cavity of the CCMV capsid gives rise to a maximum efficiency of homo-FRET between the loaded p...
Cowpea chlorotic mottle virus is a single-stranded RNA plant virus with a diameter of 28 nm. The pro...
Virus-like particles composed of the cowpea chlorotic mottle virus (CCMV) capsid protein (CP) have b...
The cowpea chlorotic mottle virus (CCMV) is a nanoparticle that holds promise for diagnostic and the...
The virus-like particle (VLP) of the Cowpea Chlorotic Mottle Virus (CCMV) has often been used to enc...
The virus-like particle (VLP) of the Cowpea Chlorotic Mottle Virus (CCMV) has often been used to enc...
The inside surfaces of the protein shells of many viruses are positively charged, thereby enhancing ...
The design and engineering of biological building blocks that self-assemble into highly ordered, wel...
Viruses provide a whole new set of building blocks for the development of new materials and as such ...
Virus-like particles (VLPs), i.e. molecular assemblies that resemble the geometry and organization o...
There has been tremendous progress towards the development of responsive polymers that are programme...
The first half of this dissertation (Chapters 1-3) deals with the in vitro self-assembly of Cowpea C...
Capsids of the cowpea chlorotic mottle virus (CCMV) are great candidates for the development into in...
Understanding the assembly pathway of viruses can contribute to creating monodisperse virus-based ma...
The work described in this thesis focuses on the use of natural protein building blocks to assemble ...
Protein cages hold much promise as carrier systems in nanomedicine, due to their well-defined size, ...
Cowpea chlorotic mottle virus is a single-stranded RNA plant virus with a diameter of 28 nm. The pro...
Virus-like particles composed of the cowpea chlorotic mottle virus (CCMV) capsid protein (CP) have b...
The cowpea chlorotic mottle virus (CCMV) is a nanoparticle that holds promise for diagnostic and the...
The virus-like particle (VLP) of the Cowpea Chlorotic Mottle Virus (CCMV) has often been used to enc...
The virus-like particle (VLP) of the Cowpea Chlorotic Mottle Virus (CCMV) has often been used to enc...
The inside surfaces of the protein shells of many viruses are positively charged, thereby enhancing ...
The design and engineering of biological building blocks that self-assemble into highly ordered, wel...
Viruses provide a whole new set of building blocks for the development of new materials and as such ...
Virus-like particles (VLPs), i.e. molecular assemblies that resemble the geometry and organization o...
There has been tremendous progress towards the development of responsive polymers that are programme...
The first half of this dissertation (Chapters 1-3) deals with the in vitro self-assembly of Cowpea C...
Capsids of the cowpea chlorotic mottle virus (CCMV) are great candidates for the development into in...
Understanding the assembly pathway of viruses can contribute to creating monodisperse virus-based ma...
The work described in this thesis focuses on the use of natural protein building blocks to assemble ...
Protein cages hold much promise as carrier systems in nanomedicine, due to their well-defined size, ...
Cowpea chlorotic mottle virus is a single-stranded RNA plant virus with a diameter of 28 nm. The pro...
Virus-like particles composed of the cowpea chlorotic mottle virus (CCMV) capsid protein (CP) have b...
The cowpea chlorotic mottle virus (CCMV) is a nanoparticle that holds promise for diagnostic and the...