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Mouse fetal liver cells in artificial capillary beds in three-dimensional four-compartment bioreactors.
Am J Pathol. 2005 Nov;167(5):1279-92. doi: 10.1016/S0002-9440(10)61215-1.
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Hepatic maturation of human fetal hepatocytes in four-compartment three-dimensional perfusion culture.
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Three-dimensional perfusion bioreactor culture supports differentiation of human fetal liver cells.
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Hepatic differentiation of human embryonic stem cells is promoted by three-dimensional dynamic perfusion culture conditions.
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Challenges and Opportunities in the Design of Liver-on-Chip Microdevices.
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Artificial liver research output and citations from 2004 to 2017: a bibliometric analysis.
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Real-time monitoring of metabolic function in liver-on-chip microdevices tracks the dynamics of mitochondrial dysfunction.
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Induction of Hepatic and Endothelial Differentiation by Perfusion in a Three-Dimensional Cell Culture Model of Human Fetal Liver.
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Three-dimensional culture in a microgravity bioreactor improves the engraftment efficiency of hepatic tissue constructs in mice.
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Integration of single-layer skin hollow fibers and scaffolds develops a three-dimensional hybrid bioreactor for bioartificial livers.
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Cellular and molecular basis of liver development.
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Adipogenesis of human adipose-derived stem cells within three-dimensional hollow fiber-based bioreactors.
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Fibroblast growth factor enriches the embryonic liver cultures for hepatic progenitors.
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Beta-catenin is temporally regulated during normal liver development.
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Wnt impacts growth and differentiation in ex vivo liver development.
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Bioartificial liver assist devices in support of patients with liver failure.
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Clinical extracorporeal hybrid liver support--phase I study with primary porcine liver cells.
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Concept for modular extracorporeal liver support for the treatment of acute hepatic failure.
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Fetal liver stroma consists of cells in epithelial-to-mesenchymal transition.
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Extracorporeal liver support: porcine or human cell based systems?
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