Microfluidic organ-on-a-chip technology aims to replace animal toxicity testing, but thus far has demonstrated few advantages over traditional methods. Mitochondrial dysfunction plays a critical role in the development of chemical and pharmaceutical toxicity, as well as pluripotency and disease processes. However, current methods to evaluate mitochondrial activity still rely on end-point assays, resulting in limited kinetic and prognostic information. Here, we present a liver-on-chip device capable of maintaining human tissue for over a month in vitro under physiological conditions. Mitochondrial respiration was monitored in real time using two-frequency phase modulation of tissue-embedded phosphorescent microprobes. A computer-controlled m...
AbstractMitochondrial oxygen tension (mitoPO2) is a key parameter for cellular function, which is co...
Mitochondria are cell organelles that have a crucial role in cellular energy metabolism. Mitochondri...
The world faces complex challenges for chemical hazard assessment. Microfluidic bioartificial organs...
Drug development is currently hampered by the inability of animal experiments to accurately predict ...
Monitoring cellular bioenergetic pathways provides the basis for a detailed understanding of the phy...
Recent advances in microfluidic engineering allow the creation of microenvironments in which human c...
Mitochondrial toxicity is a primary source of pre-clinical drug attrition, black box warning and pos...
peer reviewed3D hepatic microtissues, unlike 2D cell cultures, retain many of the in-vivo-like funct...
Mitochondria are recognized as the producers of the majority of energy cells need for their normal a...
Mitochondrial oxygen tension (mitoPO(2)) is a key parameter for cellular function, which is consider...
Changes of quantity and/or morphology of cell mitochondria are often associated with metabolic modul...
International audienceWe used the recently introduced "metabolomics-on-a-chip" approach to test seco...
Mitochondrial perturbation has been recognized as a contributing factor to various drug-induced orga...
International audienceThe world faces complex challenges for chemical hazard assessment. Microfluidi...
AbstractMitochondrial oxygen tension (mitoPO2) is a key parameter for cellular function, which is co...
Mitochondria are cell organelles that have a crucial role in cellular energy metabolism. Mitochondri...
The world faces complex challenges for chemical hazard assessment. Microfluidic bioartificial organs...
Drug development is currently hampered by the inability of animal experiments to accurately predict ...
Monitoring cellular bioenergetic pathways provides the basis for a detailed understanding of the phy...
Recent advances in microfluidic engineering allow the creation of microenvironments in which human c...
Mitochondrial toxicity is a primary source of pre-clinical drug attrition, black box warning and pos...
peer reviewed3D hepatic microtissues, unlike 2D cell cultures, retain many of the in-vivo-like funct...
Mitochondria are recognized as the producers of the majority of energy cells need for their normal a...
Mitochondrial oxygen tension (mitoPO(2)) is a key parameter for cellular function, which is consider...
Changes of quantity and/or morphology of cell mitochondria are often associated with metabolic modul...
International audienceWe used the recently introduced "metabolomics-on-a-chip" approach to test seco...
Mitochondrial perturbation has been recognized as a contributing factor to various drug-induced orga...
International audienceThe world faces complex challenges for chemical hazard assessment. Microfluidi...
AbstractMitochondrial oxygen tension (mitoPO2) is a key parameter for cellular function, which is co...
Mitochondria are cell organelles that have a crucial role in cellular energy metabolism. Mitochondri...
The world faces complex challenges for chemical hazard assessment. Microfluidic bioartificial organs...