Biology is well known for its ability to communicate through molecularly specific signaling modalities and a globally acting electrical modality associated with ion flow across biological membranes. Emerging research suggests that biology uses a third type of communication modality associated with a “flow” of electrons through reduction/oxidation (redox) reactions. This redox signaling modality appears to act globally and has features of both molecular and electrical modalities: since free electrons do not exist in aqueous solution, the electrons must “flow” through molecular intermediates that can be switched between two states-with electrons (reduced) or without electrons (oxidized). Importantly, this global redox modality is easily acces...
Redox processes are involved in almost every cell of the body as a consequence of aerobic life. In t...
International audienceHow the redox proteins and enzymes involved in bioenergetic pathways are organ...
Living organisms are characterized by the ability to process energy (all release heat). Redox reacti...
Biology is well known for its ability to communicate through molecularly specific signaling modaliti...
Abstract Microelectronic devices can directly communicate with biology, as electronic information ca...
The coupling of biological entities with electrodes has already quite some history and has reached a...
For more than a decade, Molecular Communication (MC), inspired by the natural way biological cells c...
Electronic and biological systems both have the ability to sense, respond to, and communicate releva...
Biological electron-exchange reactions are fundamental to life on earth. Redox reactions underpin re...
The concept of cell signaling in the context of nonenzyme-assisted protein modifications by reactive...
The ability to interconvert information between electronic and biologic systems has already transfor...
Redox reactions are central to the major element cycling, many cell cycles, many chemisorption and p...
Cellular communication, the exchange of information between cells, is a process in which cues are en...
The acquisition of chemical information is a critical need for medical diagnostics, food/environment...
Redox bioelectronics enlists electrochemical methods to connect to biology through biology’s native ...
Redox processes are involved in almost every cell of the body as a consequence of aerobic life. In t...
International audienceHow the redox proteins and enzymes involved in bioenergetic pathways are organ...
Living organisms are characterized by the ability to process energy (all release heat). Redox reacti...
Biology is well known for its ability to communicate through molecularly specific signaling modaliti...
Abstract Microelectronic devices can directly communicate with biology, as electronic information ca...
The coupling of biological entities with electrodes has already quite some history and has reached a...
For more than a decade, Molecular Communication (MC), inspired by the natural way biological cells c...
Electronic and biological systems both have the ability to sense, respond to, and communicate releva...
Biological electron-exchange reactions are fundamental to life on earth. Redox reactions underpin re...
The concept of cell signaling in the context of nonenzyme-assisted protein modifications by reactive...
The ability to interconvert information between electronic and biologic systems has already transfor...
Redox reactions are central to the major element cycling, many cell cycles, many chemisorption and p...
Cellular communication, the exchange of information between cells, is a process in which cues are en...
The acquisition of chemical information is a critical need for medical diagnostics, food/environment...
Redox bioelectronics enlists electrochemical methods to connect to biology through biology’s native ...
Redox processes are involved in almost every cell of the body as a consequence of aerobic life. In t...
International audienceHow the redox proteins and enzymes involved in bioenergetic pathways are organ...
Living organisms are characterized by the ability to process energy (all release heat). Redox reacti...