Faecalibacterium prausnitzii is one of the most abundant commensal microbes in the human gut. It is an important supplier of butyrate to the colonic epithelium, and low numbers of faecalibacteria have been associated with severe inflammatory bowel disease. Previous studies revealed that F. prausnitzii shuttles electrons extracellularly to oxygen in systems containing flavins and thiols. Since this electron shuttling to oxygen strongly stimulates growth, the present studies were aimed at elucidating the role of riboflavin as an extracellular electronophore of F. prausnitzii. We show that F. prausnitzii can use riboflavin as a mediator for extracellular electron transfer (EET) to the anode of microbial fuel cell systems. However, this bacteri...
Shewanella oneidensis is one of the best-understood model organisms for extracellular electron trans...
Abstract Background Some microorganisms can respire with extracellular electron acceptors using an e...
Uranium (as UO22+), technetium (as TcO4-) and neptunium (as NpO2+) are highly mobile radionuclides t...
Faecalibacterium prausnitzii is one of the most abundant commensal microbes in the human gut. It is ...
Faecalibacterium prausnitzii is one of the most abundant bacteria in the human gut ecosystem and it ...
International audienceAbstract Background Some microorganisms can respire with extracellular electro...
Background Some microorganisms can respire with extracellular electron acceptors using an exte...
Microbes can generate electricity in microbial fuel cells and transform contaminants in nature, util...
Redox reactions are ubiquitous in biological processes. Enzymes involved in redox metabolism often u...
The beneficial human gut microbe Faecalibacterium prausnitzii is a 'probiotic of the future' since i...
Extracellular electron transfer (EET) between outer membrane <i>c</i>-type cytochromes (OM <i>c</i>-...
The beneficial human gut microbe Faecalibacterium prausnitzii is a 'probiotic of the future' since i...
The beneficial human gut microbe Faecalibacterium prausnitzii is a ‘probiotic of the future ’ since ...
Cyclic voltammograms of yeast extract-containing medium exhibit a clear redox peak around -0.4 V vs....
Anaerobes respire extracellular electron acceptors by extracellular electron transfer (EET). It is w...
Shewanella oneidensis is one of the best-understood model organisms for extracellular electron trans...
Abstract Background Some microorganisms can respire with extracellular electron acceptors using an e...
Uranium (as UO22+), technetium (as TcO4-) and neptunium (as NpO2+) are highly mobile radionuclides t...
Faecalibacterium prausnitzii is one of the most abundant commensal microbes in the human gut. It is ...
Faecalibacterium prausnitzii is one of the most abundant bacteria in the human gut ecosystem and it ...
International audienceAbstract Background Some microorganisms can respire with extracellular electro...
Background Some microorganisms can respire with extracellular electron acceptors using an exte...
Microbes can generate electricity in microbial fuel cells and transform contaminants in nature, util...
Redox reactions are ubiquitous in biological processes. Enzymes involved in redox metabolism often u...
The beneficial human gut microbe Faecalibacterium prausnitzii is a 'probiotic of the future' since i...
Extracellular electron transfer (EET) between outer membrane <i>c</i>-type cytochromes (OM <i>c</i>-...
The beneficial human gut microbe Faecalibacterium prausnitzii is a 'probiotic of the future' since i...
The beneficial human gut microbe Faecalibacterium prausnitzii is a ‘probiotic of the future ’ since ...
Cyclic voltammograms of yeast extract-containing medium exhibit a clear redox peak around -0.4 V vs....
Anaerobes respire extracellular electron acceptors by extracellular electron transfer (EET). It is w...
Shewanella oneidensis is one of the best-understood model organisms for extracellular electron trans...
Abstract Background Some microorganisms can respire with extracellular electron acceptors using an e...
Uranium (as UO22+), technetium (as TcO4-) and neptunium (as NpO2+) are highly mobile radionuclides t...