Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.

Being an integral part of basic, translational and clinical research, the demand for primary human hepatocytes (PHH) is continuously growing while the availability of tissue resection material for the isolation of metabolically competent PHH remains limited. To overcome current shortcomings, this st...

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Main Authors: Moritz Kleine, Marc Riemer, Till Krech, Daphne DeTemple, Mark D Jäger, Frank Lehner, Michael P Manns, Jürgen Klempnauer, Jürgen Borlak, Hueseyin Bektas, Florian W R Vondran
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4084809?pdf=render
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author Moritz Kleine
Marc Riemer
Till Krech
Daphne DeTemple
Mark D Jäger
Frank Lehner
Michael P Manns
Jürgen Klempnauer
Jürgen Borlak
Hueseyin Bektas
Florian W R Vondran
author_facet Moritz Kleine
Marc Riemer
Till Krech
Daphne DeTemple
Mark D Jäger
Frank Lehner
Michael P Manns
Jürgen Klempnauer
Jürgen Borlak
Hueseyin Bektas
Florian W R Vondran
author_sort Moritz Kleine
collection DOAJ
description Being an integral part of basic, translational and clinical research, the demand for primary human hepatocytes (PHH) is continuously growing while the availability of tissue resection material for the isolation of metabolically competent PHH remains limited. To overcome current shortcomings, this study evaluated the use of explanted diseased organs from liver transplantation patients as a potential source of PHH. Therefore, PHH were isolated from resected surgical specimens (Rx-group; n = 60) and explanted diseased livers obtained from graft recipients with low labMELD-score (Ex-group; n = 5). Using established protocols PHH were subsequently cultured for a period of 7 days. The viability and metabolic competence of cultured PHH was assessed by the following parameters: morphology and cell count (CyQuant assay), albumin synthesis, urea production, AST-leakage, and phase I and II metabolism. Both groups were compared in terms of cell yield and metabolic function, and results were correlated with clinical parameters of tissue donors. Notably, cellular yields and viabilities were comparable between the Rx- and Ex-group and were 5.3±0.5 and 2.9±0.7×106 cells/g liver tissue with 84.3±1.3 and 76.0±8.6% viability, respectively. Moreover, PHH isolated from the Rx- or Ex-group did not differ in regards to loss of cell number in culture, albumin synthesis, urea production, AST-leakage, and phase I and II metabolism (measured by the 7-ethoxycoumarin-O-deethylase and uracil-5'-diphosphate-glucuronyltransferase activity). Likewise, basal transcript expressions of the CYP monooxygenases 1A1, 2C8 and 3A4 were comparable as was their induction when treated with a cocktail that consisted of 3-methylcholantren, rifampicin and phenobarbital, with increased expression of CYP 1A1 and 3A4 mRNA while transcript expression of CYP 2C8 was only marginally changed. In conclusion, the use of explanted diseased livers obtained from recipients with low labMELD-score might represent a valuable source of metabolically competent PHH which are comparable in viability and function to cells obtained from specimens following partial liver resection.
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spelling doaj.art-e9b7054514af451dbb912c3101cd420c2022-12-22T03:35:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0197e10138610.1371/journal.pone.0101386Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.Moritz KleineMarc RiemerTill KrechDaphne DeTempleMark D JägerFrank LehnerMichael P MannsJürgen KlempnauerJürgen BorlakHueseyin BektasFlorian W R VondranBeing an integral part of basic, translational and clinical research, the demand for primary human hepatocytes (PHH) is continuously growing while the availability of tissue resection material for the isolation of metabolically competent PHH remains limited. To overcome current shortcomings, this study evaluated the use of explanted diseased organs from liver transplantation patients as a potential source of PHH. Therefore, PHH were isolated from resected surgical specimens (Rx-group; n = 60) and explanted diseased livers obtained from graft recipients with low labMELD-score (Ex-group; n = 5). Using established protocols PHH were subsequently cultured for a period of 7 days. The viability and metabolic competence of cultured PHH was assessed by the following parameters: morphology and cell count (CyQuant assay), albumin synthesis, urea production, AST-leakage, and phase I and II metabolism. Both groups were compared in terms of cell yield and metabolic function, and results were correlated with clinical parameters of tissue donors. Notably, cellular yields and viabilities were comparable between the Rx- and Ex-group and were 5.3±0.5 and 2.9±0.7×106 cells/g liver tissue with 84.3±1.3 and 76.0±8.6% viability, respectively. Moreover, PHH isolated from the Rx- or Ex-group did not differ in regards to loss of cell number in culture, albumin synthesis, urea production, AST-leakage, and phase I and II metabolism (measured by the 7-ethoxycoumarin-O-deethylase and uracil-5'-diphosphate-glucuronyltransferase activity). Likewise, basal transcript expressions of the CYP monooxygenases 1A1, 2C8 and 3A4 were comparable as was their induction when treated with a cocktail that consisted of 3-methylcholantren, rifampicin and phenobarbital, with increased expression of CYP 1A1 and 3A4 mRNA while transcript expression of CYP 2C8 was only marginally changed. In conclusion, the use of explanted diseased livers obtained from recipients with low labMELD-score might represent a valuable source of metabolically competent PHH which are comparable in viability and function to cells obtained from specimens following partial liver resection.http://europepmc.org/articles/PMC4084809?pdf=render
spellingShingle Moritz Kleine
Marc Riemer
Till Krech
Daphne DeTemple
Mark D Jäger
Frank Lehner
Michael P Manns
Jürgen Klempnauer
Jürgen Borlak
Hueseyin Bektas
Florian W R Vondran
Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.
PLoS ONE
title Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.
title_full Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.
title_fullStr Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.
title_full_unstemmed Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.
title_short Explanted diseased livers - a possible source of metabolic competent primary human hepatocytes.
title_sort explanted diseased livers a possible source of metabolic competent primary human hepatocytes
url http://europepmc.org/articles/PMC4084809?pdf=render
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