One major obstacle in development of biomolecular electronics is the loss of function of biomolecules upon their surface-integration and storage. Although a number of reports on solid-state electron transport capacity of proteins have been made, no study on whether their functional integrity is preserved upon surface-confinement and storage over a long period of time (few months) has been reported. We have investigated two specific cases-collagen and ferritin proteins, since these proteins exhibit considerable potential as bioelectronic materials as we reported earlier. Since one of the major factors for protein degradation is the proteolytic action of protease, such studies were made under the action of protease, which was either added del...
We report on the first quantitative picture on how iron loading inside ferritin molecules occurs whe...
Here, we describe two different studies using ferritin protein as a model cage protein that interact...
Nanoparticle arrays biologically derived from an electrochemicallycontrolled site-specific biominera...
Ferritin, the iron storage protein, which is found in human body, holds great potential for applicat...
Ferritin is an iron-storage protein with properties that make it ideal for several applications incl...
Herein are described attempts to enclose zero-valent metal nanoparticles within the cavities of the ...
We review the status of protein-based molecular electronics. First, we define and discuss fundamenta...
WOS:000424853700004PubMed:29277010Ferritin is an iron cage having protein, capable of extracting met...
The development of novel drug delivery systems using biomaterials that are inherently compatible wit...
Hypothesis: The application of ferritin containers as a promising drug delivery vehicle is limited b...
Ferritin family proteins are found in all kingdoms of life and act to store iron within a protein ca...
Mini-ferritins also known as Dps (DNA-binding protein from starved cells) belong to the ferritin fam...
Ferritin is an iron storage protein responsible for the accumulation of excess intracellular iron. N...
The ATP-dependent ClpXP protease of Escherichia coli consists of two subunits, the ClpP subunit, whi...
Recently, the appreciation of the high energy yield and quantum efficiencies of a number of natural ...
We report on the first quantitative picture on how iron loading inside ferritin molecules occurs whe...
Here, we describe two different studies using ferritin protein as a model cage protein that interact...
Nanoparticle arrays biologically derived from an electrochemicallycontrolled site-specific biominera...
Ferritin, the iron storage protein, which is found in human body, holds great potential for applicat...
Ferritin is an iron-storage protein with properties that make it ideal for several applications incl...
Herein are described attempts to enclose zero-valent metal nanoparticles within the cavities of the ...
We review the status of protein-based molecular electronics. First, we define and discuss fundamenta...
WOS:000424853700004PubMed:29277010Ferritin is an iron cage having protein, capable of extracting met...
The development of novel drug delivery systems using biomaterials that are inherently compatible wit...
Hypothesis: The application of ferritin containers as a promising drug delivery vehicle is limited b...
Ferritin family proteins are found in all kingdoms of life and act to store iron within a protein ca...
Mini-ferritins also known as Dps (DNA-binding protein from starved cells) belong to the ferritin fam...
Ferritin is an iron storage protein responsible for the accumulation of excess intracellular iron. N...
The ATP-dependent ClpXP protease of Escherichia coli consists of two subunits, the ClpP subunit, whi...
Recently, the appreciation of the high energy yield and quantum efficiencies of a number of natural ...
We report on the first quantitative picture on how iron loading inside ferritin molecules occurs whe...
Here, we describe two different studies using ferritin protein as a model cage protein that interact...
Nanoparticle arrays biologically derived from an electrochemicallycontrolled site-specific biominera...