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An artificial liver sinusoid with a microfluidic endothelial‐like barrier for primary hepatocyte culture

Biotechnology and Bioengineering · 2007 · Vol. 97(5) · pp. 1340–1346
Philip LeePaul J. HungLuke P. Lee

Abstract

Primary hepatocytes represent a physiologically relevant model for drug toxicity screening. Here, we created a biologically inspired artificial liver sinusoid with a microfluidic endothelial-like barrier having mass transport properties similar to the liver acinus. This unit consisted of a cord of hepatocytes (50 x 30 x 500 microm) fed by diffusion of nutrients across the microfluidic endothelial-like barrier from a convective transport vessel (10 nL/min). This configuration sustained rat and human hepatocytes for 7 days without an extracellular matrix (ECM) coating. Experiments with the metabolism mediated liver toxicant diclofenac showed no hepatotoxicity after 4 h and an IC(50) of 334 +/- 41 microM after 24 h.

3D Printing in Biomedical ResearchLiver physiology and pathologyPluripotent Stem Cells ResearchSinusoidHepatocyteMicrofluidicsPrimary (astronomy)ChemistryCell biologyBiologyBiophysicsNanotechnologyMaterials science

MeSH terms

AnimalsCells, CulturedEquipment DesignHumansLiver CirculationCell Culture TechniquesLiver, ArtificialEquipment Failure AnalysisHepatocytesTissue EngineeringBiomimeticsEndothelial CellsMicrofluidic Analytical TechniquesRats
Citations
500
FWCI
11.52
field-weighted impact
References
31
Percentile
99%
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Citations per year
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References
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