Hepatocytes help to maintain glucose homeostasis in response to a variety of signals, including pancreatic hormones such as insulin. Insulin is released from the pancreas with variable dynamics, yet the role that these play in regulating glucose metabolism in the liver is still unclear. In this study, a modular microfluidic system was developed to quantitatively measure the effect of insulin dynamics on glucose consumption by a human hepatocarcinoma cell line, HepG2. A microfluidic bioreactor that contained 106 HepG2 cells was cultured for up to 10 days in an incubator. For glucose consumption experiments, the bioreactor was removed from the incubator and connected with reagents for an enzymatic glucose assay. The mixed components were then...
This study is based on our iGEM (international genetically engineered machine) 2019 competition proj...
The liver is vital for the regulation of glucose metabolism, but inaccessibility of the organ for di...
Background and aims: Type 2 Diabetes Mellitus is a complex disease affecting many pathways in differ...
In this work, we developed a microfluidic bioreactor for optimizing growth and maintaining structure...
Monitoring cellular bioenergetic pathways provides the basis for a detailed understanding of the phy...
Human tissue in vitro models on-chip are highly desirable to dissect the complexity of a physio-path...
Human tissue in vitro models on-chip are highly desirable to dissect the complexity of a physio-path...
A fluorescence-based enzymatic microplate intracellular glucose assay was designed and fully validat...
peer reviewed3D hepatic microtissues, unlike 2D cell cultures, retain many of the in-vivo-like funct...
Microfluidic devices can be used to perform sophisticated cell physiology experiments. Additionally,...
Microphysiological systems (MPS) are powerful tools for emulating human physiology and replicating d...
We present a novel microfluidic approach for on-line analysis of cell metabolism by simultaneous mea...
As 3D in vitro tissue models become more pervasive, their built-in nutrient, metabolite, compound, a...
#Microband biosensors, screen-printed from a water-based carbon ink containing cobalt phthalocyanine...
Microband glucose biosensors were produced by insulating and sectioning through a screen-printed, wa...
This study is based on our iGEM (international genetically engineered machine) 2019 competition proj...
The liver is vital for the regulation of glucose metabolism, but inaccessibility of the organ for di...
Background and aims: Type 2 Diabetes Mellitus is a complex disease affecting many pathways in differ...
In this work, we developed a microfluidic bioreactor for optimizing growth and maintaining structure...
Monitoring cellular bioenergetic pathways provides the basis for a detailed understanding of the phy...
Human tissue in vitro models on-chip are highly desirable to dissect the complexity of a physio-path...
Human tissue in vitro models on-chip are highly desirable to dissect the complexity of a physio-path...
A fluorescence-based enzymatic microplate intracellular glucose assay was designed and fully validat...
peer reviewed3D hepatic microtissues, unlike 2D cell cultures, retain many of the in-vivo-like funct...
Microfluidic devices can be used to perform sophisticated cell physiology experiments. Additionally,...
Microphysiological systems (MPS) are powerful tools for emulating human physiology and replicating d...
We present a novel microfluidic approach for on-line analysis of cell metabolism by simultaneous mea...
As 3D in vitro tissue models become more pervasive, their built-in nutrient, metabolite, compound, a...
#Microband biosensors, screen-printed from a water-based carbon ink containing cobalt phthalocyanine...
Microband glucose biosensors were produced by insulating and sectioning through a screen-printed, wa...
This study is based on our iGEM (international genetically engineered machine) 2019 competition proj...
The liver is vital for the regulation of glucose metabolism, but inaccessibility of the organ for di...
Background and aims: Type 2 Diabetes Mellitus is a complex disease affecting many pathways in differ...