A mathematical model has been developed to assist with the development of a hollow fibre bioreactor (HFB) for hepatotoxicity testing of xenobiotics; specifically, to inform the HFB operating set-up, interpret data from HFB outputs and aid in optimizing HFB design to mimic certain hepatic physiological conditions. Additionally, the mathematical model has been used to identify the key HFB and compound parameters that will affect xenobiotic clearance. The analysis of this model has produced novel results that allow the operating set-up to be calculated, and predictions of compound clearance to be generated. The mathematical model predicts the inlet oxygen concentration and volumetric flow rate that gives a physiological oxygen gradient in the ...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
Hepatocytes interact with new compounds: metabolism is a frequent consequence. Hepatocyte micromecha...
A mathematical model has been developed to assist with the development ofa hollow fibre bioreactor (...
In the last two decades, significant advances in the development of bioartificial organs have been a...
peer reviewedAs the major research focus is shifting to three-dimensional (3D) cultivation technique...
As the major research focus is shifting to three-dimensional (3D) cultivation techniques, hollow-fib...
Bioreactors for liver assist tested on small animal models are generally scaled-up to treat humans b...
Bioreactors for liver assist tested on small animal models are generally scaled-up to treat humans b...
Bioreactors for liver assist tested on small animal models are generally scaled-up to treat humans b...
development of tissue engineering hollow fiber bioreactors (HFB) requires the optimal design of the ...
The culture of HepaRG cells as 3D structures in the spinner-bioreactor may represent added value as ...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
ObjectiveTo improve the hollow fiber bioreactor of artificial liver. MethodsRat hepatocytes mixed wi...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
Hepatocytes interact with new compounds: metabolism is a frequent consequence. Hepatocyte micromecha...
A mathematical model has been developed to assist with the development ofa hollow fibre bioreactor (...
In the last two decades, significant advances in the development of bioartificial organs have been a...
peer reviewedAs the major research focus is shifting to three-dimensional (3D) cultivation technique...
As the major research focus is shifting to three-dimensional (3D) cultivation techniques, hollow-fib...
Bioreactors for liver assist tested on small animal models are generally scaled-up to treat humans b...
Bioreactors for liver assist tested on small animal models are generally scaled-up to treat humans b...
Bioreactors for liver assist tested on small animal models are generally scaled-up to treat humans b...
development of tissue engineering hollow fiber bioreactors (HFB) requires the optimal design of the ...
The culture of HepaRG cells as 3D structures in the spinner-bioreactor may represent added value as ...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
ObjectiveTo improve the hollow fiber bioreactor of artificial liver. MethodsRat hepatocytes mixed wi...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
A mathematical model was developed to predict oxygen transport in a hollow fiber bioartificial liver...
Hepatocytes interact with new compounds: metabolism is a frequent consequence. Hepatocyte micromecha...