A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble into a modified protein cage, was produced and used as selective carrier of anti-tumor payloads. Each modified monomer derives from the genetic fusion of two distinct modules, namely the heavy chain of human ferritin (HFt) and a stabilizing/protective PAS polypeptide sequence rich in proline (P), serine (S), and alanine (A) residues. Two genetically fused protein constructs containing PAS polymers with 40- and 75-residue lengths, respectively, were compared. They were produced and purified as recombinant proteins in Escherichia coli at high yields. Both preparations were highly soluble and stable in vitro as well as in mouse plasma. Size-exclusi...
Diverse drug loading approaches for human heavy-chain ferritin (HFn), a promising drug nanocarrier, ...
Ferritin naturally exists in most organisms and can specifically recognize the transferrin 1 recepto...
Human heavy chain ferritin (FTH1) can self-assemble into a diameter of 12-nm spherical cage with an ...
A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble int...
A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble int...
A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble int...
Nanoparticles based on the heavy chain of the human ferritin (HFn) are arousing growing interest in ...
Human ferritin heavy chain (HFt) has been demonstrated to possess considerable potential for targete...
A genetically engineered human ferritin heavy chain (HFt)-based construct has been recently shown by...
Doxorubicin is employed alone or in combination for the treatment of several hematological and solid...
Doxorubicin is employed alone or in combination for the treatment of several hematological and solid...
Ferritin, one of the most investigated protein nanocages, is considered as a promising drug carrier ...
Nanomedicine in cancer treatment has a great potential. With usage of proper nanocarrier we would be...
Diploma thesis deals with the study of dissociation and reassociation of ferritin protein cages and ...
This report encompasses validation of a new idea of anticancer drug delivery using ferritin protein....
Diverse drug loading approaches for human heavy-chain ferritin (HFn), a promising drug nanocarrier, ...
Ferritin naturally exists in most organisms and can specifically recognize the transferrin 1 recepto...
Human heavy chain ferritin (FTH1) can self-assemble into a diameter of 12-nm spherical cage with an ...
A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble int...
A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble int...
A novel human ferritin-based nanocarrier, composed of 24 modified monomers able to auto-assemble int...
Nanoparticles based on the heavy chain of the human ferritin (HFn) are arousing growing interest in ...
Human ferritin heavy chain (HFt) has been demonstrated to possess considerable potential for targete...
A genetically engineered human ferritin heavy chain (HFt)-based construct has been recently shown by...
Doxorubicin is employed alone or in combination for the treatment of several hematological and solid...
Doxorubicin is employed alone or in combination for the treatment of several hematological and solid...
Ferritin, one of the most investigated protein nanocages, is considered as a promising drug carrier ...
Nanomedicine in cancer treatment has a great potential. With usage of proper nanocarrier we would be...
Diploma thesis deals with the study of dissociation and reassociation of ferritin protein cages and ...
This report encompasses validation of a new idea of anticancer drug delivery using ferritin protein....
Diverse drug loading approaches for human heavy-chain ferritin (HFn), a promising drug nanocarrier, ...
Ferritin naturally exists in most organisms and can specifically recognize the transferrin 1 recepto...
Human heavy chain ferritin (FTH1) can self-assemble into a diameter of 12-nm spherical cage with an ...