ALEX (artificial liver for extracorporeal xenoassistance): a new bioreactor containing a porcine autologous biomatrix as hepatocyte support. Preliminary results in an ex vivo experimental model

Long-term maintenance of viability and expression of differentiated hepatocyte function is crucial for bioartificial liver support. We developed a new bioreactor design (ALEX), associated with a new extracellular autologous hepatocyte biomatrix (Porcine Autologous Biomatrix - PBM) support. To test t...

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Veröffentlicht in:International journal of artificial organs 2002-10, Vol.25 (10), p.960-965
Hauptverfasser: Ambrosino, G, Varotto, S, Basso, S, Galavotti, D, Cecchetto, A, Carraro, P, Naso, A, De Silvestro, G, Plebani, M, Giron, G, Abatangelo, G, Donato, D, Braga, G P, Cestrone, A, Marrelli, L, Trombetta, M, Lorenzelli, V, Picardi, A, Valente, M L, Palu, G, Colantoni, A, Van Thiel, D, Ricordi, C, D'Amico, D F
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Sprache:eng
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Zusammenfassung:Long-term maintenance of viability and expression of differentiated hepatocyte function is crucial for bioartificial liver support. We developed a new bioreactor design (ALEX), associated with a new extracellular autologous hepatocyte biomatrix (Porcine Autologous Biomatrix - PBM) support. To test this new bioreactor, we compared it to a standard BAL (BioArtificial Liver) cartridge in a ex vivo model using human plasma added to bilirubin, ammonium and lidocaine. A pathology study was performed on both bioreactors. The results suggest that ALEX allows a maximal contact between the perfusing plasma and the liver cells and a proper hepatocyte support by a cell-to-matrix attachment. ALEX is a suitable cell support bioreactor, guaranteeing long-term maintenance of the metabolic activity of hepatocytes when compared to a standard BAL cartridge.
ISSN:0391-3988
1724-6040
DOI:10.1177/039139880202501010