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Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans

Decellularization of pancreata and repopulation of these non-immunogenic matrices with islets and endothelial cells could provide transplantable, endocrine Neo- Pancreata. In this study, rat pancreata were perfusion decellularized and repopulated with intact islets, comparing three perfusion routes...

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Autores principales: Napierala, H., Hillebrandt, K.-H., Haep, N., Tang, P., Tintemann, M., Gassner, J., Noesser, M., Everwien, H., Seiffert, N., Kluge, M., Teegen, E., Polenz, D., Lippert, S., Geisel, D., Reutzel Selke, A., Raschzok, N., Andreou, A., Pratschke, J., Sauer, I. M., Struecker, B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5288794/
https://www.ncbi.nlm.nih.gov/pubmed/28150744
http://dx.doi.org/10.1038/srep41777
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author Napierala, H.
Hillebrandt, K.-H.
Haep, N.
Tang, P.
Tintemann, M.
Gassner, J.
Noesser, M.
Everwien, H.
Seiffert, N.
Kluge, M.
Teegen, E.
Polenz, D.
Lippert, S.
Geisel, D.
Reutzel Selke, A.
Raschzok, N.
Andreou, A.
Pratschke, J.
Sauer, I. M.
Struecker, B.
author_facet Napierala, H.
Hillebrandt, K.-H.
Haep, N.
Tang, P.
Tintemann, M.
Gassner, J.
Noesser, M.
Everwien, H.
Seiffert, N.
Kluge, M.
Teegen, E.
Polenz, D.
Lippert, S.
Geisel, D.
Reutzel Selke, A.
Raschzok, N.
Andreou, A.
Pratschke, J.
Sauer, I. M.
Struecker, B.
author_sort Napierala, H.
collection PubMed
description Decellularization of pancreata and repopulation of these non-immunogenic matrices with islets and endothelial cells could provide transplantable, endocrine Neo- Pancreata. In this study, rat pancreata were perfusion decellularized and repopulated with intact islets, comparing three perfusion routes (Artery, Portal Vein, Pancreatic Duct). Decellularization effectively removed all cellular components but conserved the pancreas specific extracellular matrix. Digital subtraction angiography of the matrices showed a conserved integrity of the decellularized vascular system but a contrast emersion into the parenchyma via the decellularized pancreatic duct. Islets infused via the pancreatic duct leaked from the ductular system into the peri-ductular decellularized space despite their magnitude. TUNEL staining and Glucose stimulated insulin secretion revealed that islets were viable and functional after the process. We present the first available protocol for perfusion decellularization of rat pancreata via three different perfusion routes. Furthermore, we provide first proof-of-concept for the repopulation of the decellularized rat pancreata with functional islets of Langerhans. The presented technique can serve as a bioengineering platform to generate implantable and functional endocrine Neo-Pancreata.
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spelling pubmed-52887942017-02-06 Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans Napierala, H. Hillebrandt, K.-H. Haep, N. Tang, P. Tintemann, M. Gassner, J. Noesser, M. Everwien, H. Seiffert, N. Kluge, M. Teegen, E. Polenz, D. Lippert, S. Geisel, D. Reutzel Selke, A. Raschzok, N. Andreou, A. Pratschke, J. Sauer, I. M. Struecker, B. Sci Rep Article Decellularization of pancreata and repopulation of these non-immunogenic matrices with islets and endothelial cells could provide transplantable, endocrine Neo- Pancreata. In this study, rat pancreata were perfusion decellularized and repopulated with intact islets, comparing three perfusion routes (Artery, Portal Vein, Pancreatic Duct). Decellularization effectively removed all cellular components but conserved the pancreas specific extracellular matrix. Digital subtraction angiography of the matrices showed a conserved integrity of the decellularized vascular system but a contrast emersion into the parenchyma via the decellularized pancreatic duct. Islets infused via the pancreatic duct leaked from the ductular system into the peri-ductular decellularized space despite their magnitude. TUNEL staining and Glucose stimulated insulin secretion revealed that islets were viable and functional after the process. We present the first available protocol for perfusion decellularization of rat pancreata via three different perfusion routes. Furthermore, we provide first proof-of-concept for the repopulation of the decellularized rat pancreata with functional islets of Langerhans. The presented technique can serve as a bioengineering platform to generate implantable and functional endocrine Neo-Pancreata. Nature Publishing Group 2017-02-02 /pmc/articles/PMC5288794/ /pubmed/28150744 http://dx.doi.org/10.1038/srep41777 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Napierala, H.
Hillebrandt, K.-H.
Haep, N.
Tang, P.
Tintemann, M.
Gassner, J.
Noesser, M.
Everwien, H.
Seiffert, N.
Kluge, M.
Teegen, E.
Polenz, D.
Lippert, S.
Geisel, D.
Reutzel Selke, A.
Raschzok, N.
Andreou, A.
Pratschke, J.
Sauer, I. M.
Struecker, B.
Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans
title Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans
title_full Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans
title_fullStr Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans
title_full_unstemmed Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans
title_short Engineering an endocrine Neo-Pancreas by repopulation of a decellularized rat pancreas with islets of Langerhans
title_sort engineering an endocrine neo-pancreas by repopulation of a decellularized rat pancreas with islets of langerhans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5288794/
https://www.ncbi.nlm.nih.gov/pubmed/28150744
http://dx.doi.org/10.1038/srep41777
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