Cargando…

Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs

Implanted bioengineered livers have not exceeded three days of continuous perfusion. Here, we show that decellularized whole porcine livers revascularized with human umbilical endothelial cells and implanted heterotopically into immunosuppressed pigs whose spleen has been removed can sustain perfusi...

Descripción completa

Detalles Bibliográficos
Autores principales: Shaheen, Mohammed F., Joo, DongJin, Ross, Jeffrey J., Anderson, Brett D., Chen, Harvey S., Huebert, Robert C., Li, Yi, Amiot, Bruce, Young, Anne, Zlochiver, Viviana, Nelson, Erek, Mounajjed, Taofic, Dietz, Allan B., Michalak, Gregory, Steiner, Benjamin G., Davidow, Dominique Seetapun, Paradise, Christopher R., van Wijnen, Andre J., Shah, Vijay H., Liu, Mengfei, Nyberg, Scott L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7153989/
https://www.ncbi.nlm.nih.gov/pubmed/31611679
http://dx.doi.org/10.1038/s41551-019-0460-x
_version_ 1783521741177356288
author Shaheen, Mohammed F.
Joo, DongJin
Ross, Jeffrey J.
Anderson, Brett D.
Chen, Harvey S.
Huebert, Robert C.
Li, Yi
Amiot, Bruce
Young, Anne
Zlochiver, Viviana
Nelson, Erek
Mounajjed, Taofic
Dietz, Allan B.
Michalak, Gregory
Steiner, Benjamin G.
Davidow, Dominique Seetapun
Paradise, Christopher R.
van Wijnen, Andre J.
Shah, Vijay H.
Liu, Mengfei
Nyberg, Scott L.
author_facet Shaheen, Mohammed F.
Joo, DongJin
Ross, Jeffrey J.
Anderson, Brett D.
Chen, Harvey S.
Huebert, Robert C.
Li, Yi
Amiot, Bruce
Young, Anne
Zlochiver, Viviana
Nelson, Erek
Mounajjed, Taofic
Dietz, Allan B.
Michalak, Gregory
Steiner, Benjamin G.
Davidow, Dominique Seetapun
Paradise, Christopher R.
van Wijnen, Andre J.
Shah, Vijay H.
Liu, Mengfei
Nyberg, Scott L.
author_sort Shaheen, Mohammed F.
collection PubMed
description Implanted bioengineered livers have not exceeded three days of continuous perfusion. Here, we show that decellularized whole porcine livers revascularized with human umbilical endothelial cells and implanted heterotopically into immunosuppressed pigs whose spleen has been removed can sustain perfusion for up to 15 days. We identified peak glucose consumption rate as a main predictor of the patency of the revascularized bioengineered livers (rBELs). On heterotopic implantation of the rBELs into pigs in the absence of anticoagulation therapy led to sustained perfusion for 3 days, followed by significant immune responses directed against the human endothelial cells. A 10-day steroid-based immunosuppression protocol and a splenectomy at time of rBEL implantation reduced the immune responses and resulted in continuous perfusion of the rBELs for over two weeks. We also show that the human endothelial cells in the perfused rBELs colonize the liver sinusoids and express sinusoidal endothelial markers similar to those in normal liver tissue. Revascularized liver scaffolds that can maintain blood perfusion at physiological pressures might eventually help overcome the chronic shortage of transplantable human livers.
format Online
Article
Text
id pubmed-7153989
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-71539892020-04-16 Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs Shaheen, Mohammed F. Joo, DongJin Ross, Jeffrey J. Anderson, Brett D. Chen, Harvey S. Huebert, Robert C. Li, Yi Amiot, Bruce Young, Anne Zlochiver, Viviana Nelson, Erek Mounajjed, Taofic Dietz, Allan B. Michalak, Gregory Steiner, Benjamin G. Davidow, Dominique Seetapun Paradise, Christopher R. van Wijnen, Andre J. Shah, Vijay H. Liu, Mengfei Nyberg, Scott L. Nat Biomed Eng Article Implanted bioengineered livers have not exceeded three days of continuous perfusion. Here, we show that decellularized whole porcine livers revascularized with human umbilical endothelial cells and implanted heterotopically into immunosuppressed pigs whose spleen has been removed can sustain perfusion for up to 15 days. We identified peak glucose consumption rate as a main predictor of the patency of the revascularized bioengineered livers (rBELs). On heterotopic implantation of the rBELs into pigs in the absence of anticoagulation therapy led to sustained perfusion for 3 days, followed by significant immune responses directed against the human endothelial cells. A 10-day steroid-based immunosuppression protocol and a splenectomy at time of rBEL implantation reduced the immune responses and resulted in continuous perfusion of the rBELs for over two weeks. We also show that the human endothelial cells in the perfused rBELs colonize the liver sinusoids and express sinusoidal endothelial markers similar to those in normal liver tissue. Revascularized liver scaffolds that can maintain blood perfusion at physiological pressures might eventually help overcome the chronic shortage of transplantable human livers. 2019-10-14 2020-04 /pmc/articles/PMC7153989/ /pubmed/31611679 http://dx.doi.org/10.1038/s41551-019-0460-x Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms Reprints and permissions information is available at www.nature.com/reprints (http://www.nature.com/reprints) .
spellingShingle Article
Shaheen, Mohammed F.
Joo, DongJin
Ross, Jeffrey J.
Anderson, Brett D.
Chen, Harvey S.
Huebert, Robert C.
Li, Yi
Amiot, Bruce
Young, Anne
Zlochiver, Viviana
Nelson, Erek
Mounajjed, Taofic
Dietz, Allan B.
Michalak, Gregory
Steiner, Benjamin G.
Davidow, Dominique Seetapun
Paradise, Christopher R.
van Wijnen, Andre J.
Shah, Vijay H.
Liu, Mengfei
Nyberg, Scott L.
Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
title Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
title_full Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
title_fullStr Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
title_full_unstemmed Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
title_short Sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
title_sort sustained perfusion of revascularized bioengineered livers heterotopically transplanted into immunosuppressed pigs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7153989/
https://www.ncbi.nlm.nih.gov/pubmed/31611679
http://dx.doi.org/10.1038/s41551-019-0460-x
work_keys_str_mv AT shaheenmohammedf sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT joodongjin sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT rossjeffreyj sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT andersonbrettd sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT chenharveys sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT huebertrobertc sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT liyi sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT amiotbruce sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT younganne sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT zlochiverviviana sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT nelsonerek sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT mounajjedtaofic sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT dietzallanb sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT michalakgregory sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT steinerbenjaming sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT davidowdominiqueseetapun sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT paradisechristopherr sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT vanwijnenandrej sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT shahvijayh sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT liumengfei sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs
AT nybergscottl sustainedperfusionofrevascularizedbioengineeredliversheterotopicallytransplantedintoimmunosuppressedpigs