Multi-stage bioengineering of a layered oesophagus with in vitro expanded muscle and epithelial adult progenitors.

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作者:Urbani Luca, Camilli Carlotta, Phylactopoulos Demetra-Ellie, Crowley Claire, Natarajan Dipa, Scottoni Federico, Maghsoudlou Panayiotis, McCann Conor J, Pellegata Alessandro Filippo, Urciuolo Anna, Deguchi Koichi, Khalaf Sahira, Aruta Salvatore Ferdinando, Signorelli Maria Cristina, Kiely David, Hannon Edward, Trevisan Matteo, Wong Rui Rachel, Baradez Marc Olivier, Moulding Dale, Virasami Alex, Gjinovci Asllan, Loukogeorgakis Stavros, Mantero Sara, Thapar Nikhil, Sebire Neil, Eaton Simon, Lowdell Mark, Cossu Giulio, Bonfanti Paola, De Coppi Paolo
A tissue engineered oesophagus could overcome limitations associated with oesophageal substitution. Combining decellularized scaffolds with patient-derived cells shows promise for regeneration of tissue defects. In this proof-of-principle study, a two-stage approach for generation of a bio-artificial oesophageal graft addresses some major challenges in organ engineering, namely: (i) development of multi-strata tubular structures, (ii) appropriate re-population/maturation of constructs before transplantation, (iii) cryopreservation of bio-engineered organs and (iv) in vivo pre-vascularization. The graft comprises decellularized rat oesophagus homogeneously re-populated with mesoangioblasts and fibroblasts for the muscle layer. The oesophageal muscle reaches organised maturation after dynamic culture in a bioreactor and functional integration with neural crest stem cells. Grafts are pre-vascularised in vivo in the omentum prior to mucosa reconstitution with expanded epithelial progenitors. Overall, our optimised two-stage approach produces a fully re-populated, structurally organized and pre-vascularized oesophageal substitute, which could become an alternative to current oesophageal substitutes.

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