Drug development is currently hampered by the inability of animal experiments to accurately predict human response. While emerging organ on chip technology offers to reduce risk using microfluidic models of human tissues, the technology still mostly relies on end-point assays and biomarker measurements to assess tissue damage resulting in limited mechanistic information and difficulties to detect adverse effects occurring below the threshold of cellular damage. Here we present a sensor-integrated liver on chip array in which oxygen is monitored using two-frequency phase modulation of tissue-embedded microprobes, while glucose, lactate and temperature are measured in real time using microfluidic electrochemical sensors. Our microphysiologica...
Hepatocytes help to maintain glucose homeostasis in response to a variety of signals, including panc...
Mortality from liver disease conditions continues to be very high. As liver diseases manifest and pr...
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 ...
Microfluidic organ-on-a-chip technology aims to replace animal toxicity testing, but thus far has de...
Monitoring cellular bioenergetic pathways provides the basis for a detailed understanding of the phy...
peer reviewed3D hepatic microtissues, unlike 2D cell cultures, retain many of the in-vivo-like funct...
Hepatic steatosis is a common liver disease that can lead to hepatotoxicity1. Many drugs, such as th...
Hepatic steatosis is a common liver disease that can lead to hepatotoxicity. Many drugs, including t...
Although the process of drug development requires efficacy and toxicity testing in animals prior to ...
This work describes a fully-integrated portable microfluidic analysis system for real-time monitorin...
Nonalcoholic fatty liver disease (NAFLD) is a chronic liver disease worldwide, ranging from simple s...
Regulation of cosmetic testing and poor predictivity of preclinical drug studies has spurred efforts...
Human tissue in vitro models on-chip are highly desirable to dissect the complexity of a physio-path...
Mortality from liver disease conditions continues to be very high. As liver diseases manifest and p...
Hepatocytes help to maintain glucose homeostasis in response to a variety of signals, including panc...
Mortality from liver disease conditions continues to be very high. As liver diseases manifest and pr...
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 ...
Microfluidic organ-on-a-chip technology aims to replace animal toxicity testing, but thus far has de...
Monitoring cellular bioenergetic pathways provides the basis for a detailed understanding of the phy...
peer reviewed3D hepatic microtissues, unlike 2D cell cultures, retain many of the in-vivo-like funct...
Hepatic steatosis is a common liver disease that can lead to hepatotoxicity1. Many drugs, such as th...
Hepatic steatosis is a common liver disease that can lead to hepatotoxicity. Many drugs, including t...
Although the process of drug development requires efficacy and toxicity testing in animals prior to ...
This work describes a fully-integrated portable microfluidic analysis system for real-time monitorin...
Nonalcoholic fatty liver disease (NAFLD) is a chronic liver disease worldwide, ranging from simple s...
Regulation of cosmetic testing and poor predictivity of preclinical drug studies has spurred efforts...
Human tissue in vitro models on-chip are highly desirable to dissect the complexity of a physio-path...
Mortality from liver disease conditions continues to be very high. As liver diseases manifest and p...
Hepatocytes help to maintain glucose homeostasis in response to a variety of signals, including panc...
Mortality from liver disease conditions continues to be very high. As liver diseases manifest and pr...
The world faces complex challenges for chemical hazard assessment. Microfluidic bioartificial organs...