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SUMMARY:Using synthetic biology to engineer living electronics across scal
 es
DTSTART:20230227T140000
DTEND:20230227T150000
DTSTAMP:20260929T072227Z
UID:b60d839c0c3b8f2f2b95579e33478c726a6350bd79509a2b2ba2eda7
CATEGORIES:Conferences - Seminars
DESCRIPTION:Dr Joshua Atkinson\, University of Southern California\, Unite
 d States\nMicrobes have evolved genetically encoded machinery enabling the
 m to utilize the abundant redox‐active molecules and minerals available 
 on Earth. Recently\, the machinery enabling these redox reactions have bee
 n leveraged for interfacing cells and biomolecules with electrical circuit
 s for biotechnological applications in energy harvesting\, chemical produc
 tion\, and environmental biosensing. Here\, I will present on efforts to u
 se protein engineering and synthetic biology to control biological electro
 n transfer across a range of spatial scales from metabolic pathways to mul
 ticellular communities and biohybrid interfaces between cells and electrod
 es. These efforts are providing new tools for constructing living electron
 ic sensors and living electronic materials.\n 
LOCATION:CM 1 120 https://plan.epfl.ch/?room==CM%201%20120
STATUS:CONFIRMED
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