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In vitrolong term differentiation and functionality of three-dimensional bioprinted primary human hepatocytes: application forin vivoengraftment.
Cuvellier, Marie; Rose, Sophie; Ezan, Frédéric; Jarry, Ulrich; de Oliveira, Hugo; Bruyère, Arnaud; Drieu La Rochelle, Christophe; Legagneux, Vincent; Langouët, Sophie; Baffet, Georges.
  • Cuvellier M; Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail)-UMR_S 1085, 35043 Rennes, France.
  • Rose S; Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail)-UMR_S 1085, 35043 Rennes, France.
  • Ezan F; Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail)-UMR_S 1085, 35043 Rennes, France.
  • Jarry U; Univ Rennes, CNRS, INSERM, BIOSIT UAR 3480, US_S 018, Oncotrial, F-35000 Rennes, France.
  • de Oliveira H; Biotrial Pharmacology, Unité de Pharmacologie Préclinique, Rennes, France.
  • Bruyère A; Univ Bordeaux, ART Bioprint, Inserm-UMR 1026, Bordeaux, France.
  • Drieu La Rochelle C; Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail)-UMR_S 1085, 35043 Rennes, France.
  • Legagneux V; Biotrial Pharmacology, Unité de Pharmacologie Préclinique, Rennes, France.
  • Langouët S; Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail)-UMR_S 1085, 35043 Rennes, France.
  • Baffet G; Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail)-UMR_S 1085, 35043 Rennes, France.
Biofabrication ; 14(3)2022 06 30.
Article en En | MEDLINE | ID: mdl-35696992
ABSTRACT
In recent decades, 3Din vitrocultures of primary human hepatocytes (PHHs) have been increasingly developed to establish models capable of faithfully mimicking main liver functions. The use of 3D bioprinting, capable of recreating structures composed of cells embedded in matrix with controlled microarchitectures, is an emergent key feature for tissue engineering. In this work, we used an extrusion-based system to print PHH in a methacrylated gelatin (GelMa) matrix. PHH bioprinted in GelMa rapidly organized into polarized hollow spheroids and were viable for at least 28 d of culture. These PHH were highly differentiated with maintenance of liver differentiation genes over time, as demonstrated by transcriptomic analysis and functional approaches. The cells were polarized with localization of apico/canalicular regions, and displayed activities of phase I and II biotransformation enzymes that could be regulated by inducers. Furthermore, the implantation of the bioprinted structures in mice demonstrated their capability to vascularize, and their ability to maintain human hepatic specific functions for at least 28 d was illustrated by albumin secretion and debrisoquine metabolism. This model could hold great promise for human liver tissue generation and its use in future biotechnological developments.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Bioimpresión Límite: Animals / Humans Idioma: En Año: 2022 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Bioimpresión Límite: Animals / Humans Idioma: En Año: 2022 Tipo del documento: Article