Human ferritins have been extensively studied to be used as nanocarriers for diverse applications and could represent a convenient alternative for targeted delivery of anticancer drugs and imaging agents. However, the most relevant limitation to their applications is the need for highly acidic experimental conditions during the initial steps of particle/cargo assembly, a process that could affect both drug stability and the complete reassembly of the ferritin cage. To overcome this issue the unique assembly of Archaeoglobus fulgidus ferritin was genetically engineered by changing a surface exposed loop of 12 amino acids connecting B and C helices to mimic the sequence of the analogous human H-chain ferritin loop. This new chimeric protein w...
Superparamagnetic iron oxide nanoparticles (SPIONs) may act as an excellent theragnostic tool if pro...
Nanoparticles are used as carriers for the delivery of drugs and imaging agents. Proteins are safer ...
Ferritin family proteins are found in all kingdoms of life and act to store iron within a protein ca...
Human ferritins have been extensively studied to be used as nanocarriers for diverse applications an...
In this work, we have exploited the unique properties of a chimeric archaeal-human ferritin to encap...
This project aims to expand the utilization of protein containers in nanotechnology. Ferritin is wel...
Ferritin is engineered as a targeted carrier for therapeutic and diagnostic agents. It is a naturall...
Human heavy chain ferritin (FTH1) can self-assemble into a diameter of 12-nm spherical cage with an ...
Human ferritin H-chain (HFt) nanoparticles represent one of the most appropriate vectors for cellula...
Ferritin self-assembly has been widely exploited for the synthesis of a variety of nanoparticles for...
<p>Based on their nanocage architectures, ferritins show their potential applications in medical ima...
Ferritin naturally exists in most organisms and can specifically recognize the transferrin 1 recepto...
Ferritin is an iron-storage protein with properties that make it ideal for several applications incl...
Cancer is found to be one of the major threats to human race with increasing number of incidences ev...
The delivery of therapeutic proteins is one of the greatest challenges in the treatment of human dis...
Superparamagnetic iron oxide nanoparticles (SPIONs) may act as an excellent theragnostic tool if pro...
Nanoparticles are used as carriers for the delivery of drugs and imaging agents. Proteins are safer ...
Ferritin family proteins are found in all kingdoms of life and act to store iron within a protein ca...
Human ferritins have been extensively studied to be used as nanocarriers for diverse applications an...
In this work, we have exploited the unique properties of a chimeric archaeal-human ferritin to encap...
This project aims to expand the utilization of protein containers in nanotechnology. Ferritin is wel...
Ferritin is engineered as a targeted carrier for therapeutic and diagnostic agents. It is a naturall...
Human heavy chain ferritin (FTH1) can self-assemble into a diameter of 12-nm spherical cage with an ...
Human ferritin H-chain (HFt) nanoparticles represent one of the most appropriate vectors for cellula...
Ferritin self-assembly has been widely exploited for the synthesis of a variety of nanoparticles for...
<p>Based on their nanocage architectures, ferritins show their potential applications in medical ima...
Ferritin naturally exists in most organisms and can specifically recognize the transferrin 1 recepto...
Ferritin is an iron-storage protein with properties that make it ideal for several applications incl...
Cancer is found to be one of the major threats to human race with increasing number of incidences ev...
The delivery of therapeutic proteins is one of the greatest challenges in the treatment of human dis...
Superparamagnetic iron oxide nanoparticles (SPIONs) may act as an excellent theragnostic tool if pro...
Nanoparticles are used as carriers for the delivery of drugs and imaging agents. Proteins are safer ...
Ferritin family proteins are found in all kingdoms of life and act to store iron within a protein ca...