A virus-based nanostructuring strategy is proposed for improving the catalytic performance of integrated redox enzyme electrodes. Random arrays of adsorbed filamentous fd bacteriophage particles, used as scaffolds, are assembled onto gold electrode surfaces. The viral particles are endowed with functionally coupled enzymatic and redox properties, by the sequential immunological assembly of quinoprotein glucose dehydrogenase conjugated antibodies and ferrocene PEGylated antibodies on their protein shell. The resulting virus-scaffolded enzyme/redox mediator integrated system displays a large enhancement in the catalytic current generated per enzyme molecule (i.e., in enzymatic turnover) as compared with nonscaffolded integrated glucose oxidiz...
Virus particles are probably the most precisely defined nanometre-sized objects that can be formed b...
Redox-active materials are an attractive platform for engineering specific interactions with charged...
Construction of catalytic centers on natural protein aggregates is a challenging topic in biomateria...
UMR BFP - Equipe VirologieInternational audienceA virus-based nanostructuring strategy is proposed f...
Organizing active enzyme molecules on nanometer‐sized scaffolds is a promising strategy for designin...
International audienceOrganizing active enzyme molecules on nanometer-sized scaffolds is a promising...
The enzymatic activity of tobacco mosaic virus (TMV) nanorod particles decorated with an integrated ...
Surface-immobilized fd bacteriophage particles are used as scaffolds to coassemble the redox enzyme ...
The integration of biological molecules and nanoscale components provides a fertile basis for the co...
Glucose oxidase-based biofuel cells are a promising source of alternative energy for small device ap...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...
A novel bioelectrode system has been prepared in which an enzyme and a conducting polymer hydrogel a...
Enzymatic biofuel cells are a promising source of alternative energy for small device applications, ...
International audienceBiofuel cells, and among them enzymatic biofuel cells, are expected to take pa...
Protein cages are attractive as molecular scaffolds for the fundamental study of enzymes and metabol...
Virus particles are probably the most precisely defined nanometre-sized objects that can be formed b...
Redox-active materials are an attractive platform for engineering specific interactions with charged...
Construction of catalytic centers on natural protein aggregates is a challenging topic in biomateria...
UMR BFP - Equipe VirologieInternational audienceA virus-based nanostructuring strategy is proposed f...
Organizing active enzyme molecules on nanometer‐sized scaffolds is a promising strategy for designin...
International audienceOrganizing active enzyme molecules on nanometer-sized scaffolds is a promising...
The enzymatic activity of tobacco mosaic virus (TMV) nanorod particles decorated with an integrated ...
Surface-immobilized fd bacteriophage particles are used as scaffolds to coassemble the redox enzyme ...
The integration of biological molecules and nanoscale components provides a fertile basis for the co...
Glucose oxidase-based biofuel cells are a promising source of alternative energy for small device ap...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...
A novel bioelectrode system has been prepared in which an enzyme and a conducting polymer hydrogel a...
Enzymatic biofuel cells are a promising source of alternative energy for small device applications, ...
International audienceBiofuel cells, and among them enzymatic biofuel cells, are expected to take pa...
Protein cages are attractive as molecular scaffolds for the fundamental study of enzymes and metabol...
Virus particles are probably the most precisely defined nanometre-sized objects that can be formed b...
Redox-active materials are an attractive platform for engineering specific interactions with charged...
Construction of catalytic centers on natural protein aggregates is a challenging topic in biomateria...