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Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant

Pig-to-human xenotransplantation is rapidly approaching the clinical arena; however, it is unclear which immunomodulatory regimens will effectively control human immune responses to pig xenografts. We transplanted a gene-edited pig kidney into a brain-dead human recipient on pharmacologic immunosupp...

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Autores principales: Cheung, Matthew D., Asiimwe, Rebecca, Erman, Elise N., Fucile, Christopher F., Liu, Shanrun, Sun, Chiao-Wang, Hanumanthu, Vidya Sagar, Pal, Harish C., Wright, Emma D., Ghajar-Rahimi, Gelare, Epstein, Daniel, Orandi, Babak J., Kumar, Vineeta, Anderson, Douglas J., Greene, Morgan E., Bell, Markayla, Yates, Stefani, Moore, Kyle H., LaFontaine, Jennifer, Killian, John T., Baker, Gavin, Perry, Jackson, Reed, Rhiannon, Little, Shawn C., Rosenberg, Alexander F., George, James F., Locke, Jayme E., Porrett, Paige M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Journal Experts 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882594/
https://www.ncbi.nlm.nih.gov/pubmed/36711785
http://dx.doi.org/10.21203/rs.3.rs-2382345/v1
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author Cheung, Matthew D.
Asiimwe, Rebecca
Erman, Elise N.
Fucile, Christopher F.
Liu, Shanrun
Sun, Chiao-Wang
Hanumanthu, Vidya Sagar
Pal, Harish C.
Wright, Emma D.
Ghajar-Rahimi, Gelare
Epstein, Daniel
Orandi, Babak J.
Kumar, Vineeta
Anderson, Douglas J.
Greene, Morgan E.
Bell, Markayla
Yates, Stefani
Moore, Kyle H.
LaFontaine, Jennifer
Killian, John T.
Baker, Gavin
Perry, Jackson
Reed, Rhiannon
Little, Shawn C.
Rosenberg, Alexander F.
George, James F.
Locke, Jayme E.
Porrett, Paige M.
author_facet Cheung, Matthew D.
Asiimwe, Rebecca
Erman, Elise N.
Fucile, Christopher F.
Liu, Shanrun
Sun, Chiao-Wang
Hanumanthu, Vidya Sagar
Pal, Harish C.
Wright, Emma D.
Ghajar-Rahimi, Gelare
Epstein, Daniel
Orandi, Babak J.
Kumar, Vineeta
Anderson, Douglas J.
Greene, Morgan E.
Bell, Markayla
Yates, Stefani
Moore, Kyle H.
LaFontaine, Jennifer
Killian, John T.
Baker, Gavin
Perry, Jackson
Reed, Rhiannon
Little, Shawn C.
Rosenberg, Alexander F.
George, James F.
Locke, Jayme E.
Porrett, Paige M.
author_sort Cheung, Matthew D.
collection PubMed
description Pig-to-human xenotransplantation is rapidly approaching the clinical arena; however, it is unclear which immunomodulatory regimens will effectively control human immune responses to pig xenografts. We transplanted a gene-edited pig kidney into a brain-dead human recipient on pharmacologic immunosuppression and studied the human immune response to the xenograft using spatial transcriptomics and single-cell RNA sequencing. Human immune cells were uncommon in the porcine kidney cortex early after xenotransplantation and consisted of primarily myeloid cells. Both the porcine resident macrophages and human infiltrating macrophages expressed genes consistent with an alternatively activated, anti-inflammatory phenotype. No significant infiltration of human B or T cells into the porcine kidney xenograft was detected. Altogether, these findings provide proof of concept that conventional pharmacologic immunosuppression is sufficient to restrict infiltration of human immune cells into the xenograft early after compatible pig-to-human kidney xenotransplantation.
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spelling pubmed-98825942023-01-28 Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant Cheung, Matthew D. Asiimwe, Rebecca Erman, Elise N. Fucile, Christopher F. Liu, Shanrun Sun, Chiao-Wang Hanumanthu, Vidya Sagar Pal, Harish C. Wright, Emma D. Ghajar-Rahimi, Gelare Epstein, Daniel Orandi, Babak J. Kumar, Vineeta Anderson, Douglas J. Greene, Morgan E. Bell, Markayla Yates, Stefani Moore, Kyle H. LaFontaine, Jennifer Killian, John T. Baker, Gavin Perry, Jackson Reed, Rhiannon Little, Shawn C. Rosenberg, Alexander F. George, James F. Locke, Jayme E. Porrett, Paige M. Res Sq Article Pig-to-human xenotransplantation is rapidly approaching the clinical arena; however, it is unclear which immunomodulatory regimens will effectively control human immune responses to pig xenografts. We transplanted a gene-edited pig kidney into a brain-dead human recipient on pharmacologic immunosuppression and studied the human immune response to the xenograft using spatial transcriptomics and single-cell RNA sequencing. Human immune cells were uncommon in the porcine kidney cortex early after xenotransplantation and consisted of primarily myeloid cells. Both the porcine resident macrophages and human infiltrating macrophages expressed genes consistent with an alternatively activated, anti-inflammatory phenotype. No significant infiltration of human B or T cells into the porcine kidney xenograft was detected. Altogether, these findings provide proof of concept that conventional pharmacologic immunosuppression is sufficient to restrict infiltration of human immune cells into the xenograft early after compatible pig-to-human kidney xenotransplantation. American Journal Experts 2023-01-09 /pmc/articles/PMC9882594/ /pubmed/36711785 http://dx.doi.org/10.21203/rs.3.rs-2382345/v1 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Cheung, Matthew D.
Asiimwe, Rebecca
Erman, Elise N.
Fucile, Christopher F.
Liu, Shanrun
Sun, Chiao-Wang
Hanumanthu, Vidya Sagar
Pal, Harish C.
Wright, Emma D.
Ghajar-Rahimi, Gelare
Epstein, Daniel
Orandi, Babak J.
Kumar, Vineeta
Anderson, Douglas J.
Greene, Morgan E.
Bell, Markayla
Yates, Stefani
Moore, Kyle H.
LaFontaine, Jennifer
Killian, John T.
Baker, Gavin
Perry, Jackson
Reed, Rhiannon
Little, Shawn C.
Rosenberg, Alexander F.
George, James F.
Locke, Jayme E.
Porrett, Paige M.
Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
title Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
title_full Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
title_fullStr Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
title_full_unstemmed Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
title_short Spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
title_sort spatiotemporal immune atlas of the first clinical-grade, gene-edited pig-to-human kidney xenotransplant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882594/
https://www.ncbi.nlm.nih.gov/pubmed/36711785
http://dx.doi.org/10.21203/rs.3.rs-2382345/v1
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