Porous protein cages are supramolecular protein self-assemblies presenting pores that allow the access of surrounding molecules and ions into their core in order to store and transport them in biological environments. Protein cages’ pores are attractive channels for the internalisation of inorganic nanoparticles and an alternative for the preparation of hybrid bioinspired nanoparticles. However, strategies based on nanoparticle transport through the pores are largely unexplored, due to the difficulty of tailoring nanoparticles that have diameters commensurate with the pores size and simultaneously displaying specific affinity to the cages’ core and low non-specific binding to the cages’ outer surface. We evaluated the specific internalisati...
Protein nanocages are highly ordered nanometer scale architectures, which are typically formed by ho...
Protein cages are nanocompartments with a well-defined structure and monodisperse size. They are com...
Self-assembly protein cages have drawn much attention for their applications in nanotechnology. E2 p...
<div><p>Porous protein cages are supramolecular protein self-assemblies presenting pores that allow ...
Porous protein cages are supramolecular protein self-assemblies presenting pores that allow the acce...
<p>(a) Site-directed mutagenesis of E2 protein cage’s core with oligohistidine sequences (blue) at t...
Artificial protein cages have great potential in a number of areas including cargo capture and deliv...
Nanotechnology has the potential to revolutionise every facet of human life. One particularly exciti...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...
Nanotechnology has become a field of intense interest due to its applications in medicine, cosmetics...
PhD ThesisThe use of gold nanoparticles (AuNP) has a long and varied history, thought to cover sever...
When nanoparticles (NPs) are exposed to biological media, proteins are adsorbed, forming a so-called...
Well-defined containers constructed from multiple protein subunits are a unique class of nanomateria...
For the purpose of proteins bio-conjugation to Gold Nano-Particles (GNPs), we designed and synthesiz...
Generally, the high diversity of protein properties necessitates the development of unique nanoparti...
Protein nanocages are highly ordered nanometer scale architectures, which are typically formed by ho...
Protein cages are nanocompartments with a well-defined structure and monodisperse size. They are com...
Self-assembly protein cages have drawn much attention for their applications in nanotechnology. E2 p...
<div><p>Porous protein cages are supramolecular protein self-assemblies presenting pores that allow ...
Porous protein cages are supramolecular protein self-assemblies presenting pores that allow the acce...
<p>(a) Site-directed mutagenesis of E2 protein cage’s core with oligohistidine sequences (blue) at t...
Artificial protein cages have great potential in a number of areas including cargo capture and deliv...
Nanotechnology has the potential to revolutionise every facet of human life. One particularly exciti...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...
Nanotechnology has become a field of intense interest due to its applications in medicine, cosmetics...
PhD ThesisThe use of gold nanoparticles (AuNP) has a long and varied history, thought to cover sever...
When nanoparticles (NPs) are exposed to biological media, proteins are adsorbed, forming a so-called...
Well-defined containers constructed from multiple protein subunits are a unique class of nanomateria...
For the purpose of proteins bio-conjugation to Gold Nano-Particles (GNPs), we designed and synthesiz...
Generally, the high diversity of protein properties necessitates the development of unique nanoparti...
Protein nanocages are highly ordered nanometer scale architectures, which are typically formed by ho...
Protein cages are nanocompartments with a well-defined structure and monodisperse size. They are com...
Self-assembly protein cages have drawn much attention for their applications in nanotechnology. E2 p...