Systemic absorption and metabolism of drugs in the small intestine, metabolism by the liver as well as excretion by the kidney are key determinants of efficacy and safety for therapeutic candidates. However, these systemic responses of applied substances lack in most in vitro assays. In this study, a microphysiological system maintaining the functionality of four organs over 28 days in co-culture has been established at a minute but standardized microsystem scale. Preformed human intestine and skin models have been integrated into the four-organ-chip on standard cell culture inserts at a size 100000-fold smaller than their human counterpart organs. A 3D-based spheroid, equivalent to ten liver lobules, mimics liver function. Finally, a barri...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Multi-organ microdevices can mimic tissue-tissue interactions that occur as a result of metabolite t...
Dynamic miniaturized human multi-micro-organ bioreactor systems are envisaged as a possible solution...
The ever growing amount of new substances released onto the market and the limited predictability of...
Current in vitro and animal tests for drug development are failing to emulate the systemic organ com...
Systemic repeated dose safety assessment and systemic efficacy evaluation of substances are currentl...
Microphysiological systems play a pivotal role in progressing toward a global paradigm shift in drug...
Introduction: The ever growing amount of new substances released to the market and the limited predi...
Advances in organ-on-chip technologies for the application in in vitro drug development provide an a...
Although the process of drug development requires efficacy and toxicity testing in animals prior to ...
Systemic repeated dose safety assessment and systemic efficacy evaluation of substances are currentl...
Modeling the human physiology in vitro is a challenging task, yet one of importance for the developm...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
International audienceAbstract The development of livers-on-a-chip aims to provide pharmaceutical co...
© 2016 The Royal Society of Chemistry. In vitro models of human tissue are crucial to our ability to...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Multi-organ microdevices can mimic tissue-tissue interactions that occur as a result of metabolite t...
Dynamic miniaturized human multi-micro-organ bioreactor systems are envisaged as a possible solution...
The ever growing amount of new substances released onto the market and the limited predictability of...
Current in vitro and animal tests for drug development are failing to emulate the systemic organ com...
Systemic repeated dose safety assessment and systemic efficacy evaluation of substances are currentl...
Microphysiological systems play a pivotal role in progressing toward a global paradigm shift in drug...
Introduction: The ever growing amount of new substances released to the market and the limited predi...
Advances in organ-on-chip technologies for the application in in vitro drug development provide an a...
Although the process of drug development requires efficacy and toxicity testing in animals prior to ...
Systemic repeated dose safety assessment and systemic efficacy evaluation of substances are currentl...
Modeling the human physiology in vitro is a challenging task, yet one of importance for the developm...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
International audienceAbstract The development of livers-on-a-chip aims to provide pharmaceutical co...
© 2016 The Royal Society of Chemistry. In vitro models of human tissue are crucial to our ability to...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Multi-organ microdevices can mimic tissue-tissue interactions that occur as a result of metabolite t...
Dynamic miniaturized human multi-micro-organ bioreactor systems are envisaged as a possible solution...