Ferritin, a protein that is present in the human body for a controlled iron storage and release, consists of a ferrihydrite core and a protein shell. Apoferritin, the empty shell of ferritin, can be modified to carry tailored properties exploitable for targeted and direct drug delivery. This protein shell has the ability to dis- and reassemble depending on the pH value of the liquid environment and can thus be filled with the desired substance. Here we observed the dis- and reassembly process of the protein shell of ferritin and apoferritin in situ and in real space using atomic force microscopy. Ferritin and apoferritin nanoparticles adsorbed on a mica substrate exhibited a change in their size by varying the pH value of the surrounding me...
Ferritin (Ftn) is a natural protein that can store metal (hydr)oxide nanoparticles of tunable size i...
Ferritin (Ftn) is a natural protein that can store metal (hydr)oxide nanoparticles of tunable size i...
Various proteins form nanostructures exhibiting unique functions, making them attractive as next-gen...
Ferritin, a protein that is present in the human body for a controlled iron storage and release, con...
The pH-dependent structures of the ferritin shell (apoferritin, 24-mer) and the ferrihydrite core, u...
As the major iron storage protein, ferritin stores and releases iron for maintaining the balance of ...
BACKGROUND: Ferritin exhibits complex behavior in the ultracentrifuge due to variability in iron cor...
The thermal and chemical stability of 24mer ferritins has led to attempts to exploit their naturally...
Ferritin is a protein that stores and releases iron to prevent diseases associated with iron dysregu...
The spherical cage-like protein ferritin was reconstituted with varying numbers of iron atoms perpro...
Self-assembling protein cages have been exploited as templates for nanoparticle synthesis. The ferri...
Herein are described attempts to enclose zero-valent metal nanoparticles within the cavities of the ...
The polypeptide shell of the ferritin molecule has been imaged in water by atomic force microscopy (...
Ferritin, a naturally occuring iron-storage protein, plays an important role in nanoengineering and ...
Physico-chemical characterization of biomacromolecule magnet of erritin in terms of morphology, stru...
Ferritin (Ftn) is a natural protein that can store metal (hydr)oxide nanoparticles of tunable size i...
Ferritin (Ftn) is a natural protein that can store metal (hydr)oxide nanoparticles of tunable size i...
Various proteins form nanostructures exhibiting unique functions, making them attractive as next-gen...
Ferritin, a protein that is present in the human body for a controlled iron storage and release, con...
The pH-dependent structures of the ferritin shell (apoferritin, 24-mer) and the ferrihydrite core, u...
As the major iron storage protein, ferritin stores and releases iron for maintaining the balance of ...
BACKGROUND: Ferritin exhibits complex behavior in the ultracentrifuge due to variability in iron cor...
The thermal and chemical stability of 24mer ferritins has led to attempts to exploit their naturally...
Ferritin is a protein that stores and releases iron to prevent diseases associated with iron dysregu...
The spherical cage-like protein ferritin was reconstituted with varying numbers of iron atoms perpro...
Self-assembling protein cages have been exploited as templates for nanoparticle synthesis. The ferri...
Herein are described attempts to enclose zero-valent metal nanoparticles within the cavities of the ...
The polypeptide shell of the ferritin molecule has been imaged in water by atomic force microscopy (...
Ferritin, a naturally occuring iron-storage protein, plays an important role in nanoengineering and ...
Physico-chemical characterization of biomacromolecule magnet of erritin in terms of morphology, stru...
Ferritin (Ftn) is a natural protein that can store metal (hydr)oxide nanoparticles of tunable size i...
Ferritin (Ftn) is a natural protein that can store metal (hydr)oxide nanoparticles of tunable size i...
Various proteins form nanostructures exhibiting unique functions, making them attractive as next-gen...