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A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery

Chronic liver disease and hepatocellular carcinoma (HCC) are life-threatening diseases with limited treatment options. The lack of clinically relevant/tractable experimental models hampers therapeutic discovery. Here, we develop a simple and robust human liver cell-based system modeling a clinical p...

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Autores principales: Crouchet, Emilie, Bandiera, Simonetta, Fujiwara, Naoto, Li, Shen, El Saghire, Hussein, Fernández-Vaquero, Mirian, Riedl, Tobias, Sun, Xiaochen, Hirschfield, Hadassa, Jühling, Frank, Zhu, Shijia, Roehlen, Natascha, Ponsolles, Clara, Heydmann, Laura, Saviano, Antonio, Qian, Tongqi, Venkatesh, Anu, Lupberger, Joachim, Verrier, Eloi R., Sojoodi, Mozhdeh, Oudot, Marine A., Duong, François H. T., Masia, Ricard, Wei, Lan, Thumann, Christine, Durand, Sarah C., González-Motos, Victor, Heide, Danijela, Hetzer, Jenny, Nakagawa, Shigeki, Ono, Atsushi, Song, Won-Min, Higashi, Takaaki, Sanchez, Roberto, Kim, Rosa S., Bian, C. Billie, Kiani, Karun, Croonenborghs, Tom, Subramanian, Aravind, Chung, Raymond T., Straub, Beate K., Schuppan, Detlef, Ankavay, Maliki, Cocquerel, Laurence, Schaeffer, Evelyne, Goossens, Nicolas, Koh, Anna P., Mahajan, Milind, Nair, Venugopalan D., Gunasekaran, Ganesh, Schwartz, Myron E., Bardeesy, Nabeel, Shalek, Alex K., Rozenblatt-Rosen, Orit, Regev, Aviv, Felli, Emanuele, Pessaux, Patrick, Tanabe, Kenneth K., Heikenwälder, Mathias, Schuster, Catherine, Pochet, Nathalie, Zeisel, Mirjam B., Fuchs, Bryan C., Hoshida, Yujin, Baumert, Thomas F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8448834/
https://www.ncbi.nlm.nih.gov/pubmed/34535664
http://dx.doi.org/10.1038/s41467-021-25468-9
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author Crouchet, Emilie
Bandiera, Simonetta
Fujiwara, Naoto
Li, Shen
El Saghire, Hussein
Fernández-Vaquero, Mirian
Riedl, Tobias
Sun, Xiaochen
Hirschfield, Hadassa
Jühling, Frank
Zhu, Shijia
Roehlen, Natascha
Ponsolles, Clara
Heydmann, Laura
Saviano, Antonio
Qian, Tongqi
Venkatesh, Anu
Lupberger, Joachim
Verrier, Eloi R.
Sojoodi, Mozhdeh
Oudot, Marine A.
Duong, François H. T.
Masia, Ricard
Wei, Lan
Thumann, Christine
Durand, Sarah C.
González-Motos, Victor
Heide, Danijela
Hetzer, Jenny
Nakagawa, Shigeki
Ono, Atsushi
Song, Won-Min
Higashi, Takaaki
Sanchez, Roberto
Kim, Rosa S.
Bian, C. Billie
Kiani, Karun
Croonenborghs, Tom
Subramanian, Aravind
Chung, Raymond T.
Straub, Beate K.
Schuppan, Detlef
Ankavay, Maliki
Cocquerel, Laurence
Schaeffer, Evelyne
Goossens, Nicolas
Koh, Anna P.
Mahajan, Milind
Nair, Venugopalan D.
Gunasekaran, Ganesh
Schwartz, Myron E.
Bardeesy, Nabeel
Shalek, Alex K.
Rozenblatt-Rosen, Orit
Regev, Aviv
Felli, Emanuele
Pessaux, Patrick
Tanabe, Kenneth K.
Heikenwälder, Mathias
Schuster, Catherine
Pochet, Nathalie
Zeisel, Mirjam B.
Fuchs, Bryan C.
Hoshida, Yujin
Baumert, Thomas F.
author_facet Crouchet, Emilie
Bandiera, Simonetta
Fujiwara, Naoto
Li, Shen
El Saghire, Hussein
Fernández-Vaquero, Mirian
Riedl, Tobias
Sun, Xiaochen
Hirschfield, Hadassa
Jühling, Frank
Zhu, Shijia
Roehlen, Natascha
Ponsolles, Clara
Heydmann, Laura
Saviano, Antonio
Qian, Tongqi
Venkatesh, Anu
Lupberger, Joachim
Verrier, Eloi R.
Sojoodi, Mozhdeh
Oudot, Marine A.
Duong, François H. T.
Masia, Ricard
Wei, Lan
Thumann, Christine
Durand, Sarah C.
González-Motos, Victor
Heide, Danijela
Hetzer, Jenny
Nakagawa, Shigeki
Ono, Atsushi
Song, Won-Min
Higashi, Takaaki
Sanchez, Roberto
Kim, Rosa S.
Bian, C. Billie
Kiani, Karun
Croonenborghs, Tom
Subramanian, Aravind
Chung, Raymond T.
Straub, Beate K.
Schuppan, Detlef
Ankavay, Maliki
Cocquerel, Laurence
Schaeffer, Evelyne
Goossens, Nicolas
Koh, Anna P.
Mahajan, Milind
Nair, Venugopalan D.
Gunasekaran, Ganesh
Schwartz, Myron E.
Bardeesy, Nabeel
Shalek, Alex K.
Rozenblatt-Rosen, Orit
Regev, Aviv
Felli, Emanuele
Pessaux, Patrick
Tanabe, Kenneth K.
Heikenwälder, Mathias
Schuster, Catherine
Pochet, Nathalie
Zeisel, Mirjam B.
Fuchs, Bryan C.
Hoshida, Yujin
Baumert, Thomas F.
author_sort Crouchet, Emilie
collection PubMed
description Chronic liver disease and hepatocellular carcinoma (HCC) are life-threatening diseases with limited treatment options. The lack of clinically relevant/tractable experimental models hampers therapeutic discovery. Here, we develop a simple and robust human liver cell-based system modeling a clinical prognostic liver signature (PLS) predicting long-term liver disease progression toward HCC. Using the PLS as a readout, followed by validation in nonalcoholic steatohepatitis/fibrosis/HCC animal models and patient-derived liver spheroids, we identify nizatidine, a histamine receptor H2 (HRH2) blocker, for treatment of advanced liver disease and HCC chemoprevention. Moreover, perturbation studies combined with single cell RNA-Seq analyses of patient liver tissues uncover hepatocytes and HRH2(+), CLEC5A(high), MARCO(low) liver macrophages as potential nizatidine targets. The PLS model combined with single cell RNA-Seq of patient tissues enables discovery of urgently needed targets and therapeutics for treatment of advanced liver disease and cancer prevention.
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spelling pubmed-84488342021-10-05 A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery Crouchet, Emilie Bandiera, Simonetta Fujiwara, Naoto Li, Shen El Saghire, Hussein Fernández-Vaquero, Mirian Riedl, Tobias Sun, Xiaochen Hirschfield, Hadassa Jühling, Frank Zhu, Shijia Roehlen, Natascha Ponsolles, Clara Heydmann, Laura Saviano, Antonio Qian, Tongqi Venkatesh, Anu Lupberger, Joachim Verrier, Eloi R. Sojoodi, Mozhdeh Oudot, Marine A. Duong, François H. T. Masia, Ricard Wei, Lan Thumann, Christine Durand, Sarah C. González-Motos, Victor Heide, Danijela Hetzer, Jenny Nakagawa, Shigeki Ono, Atsushi Song, Won-Min Higashi, Takaaki Sanchez, Roberto Kim, Rosa S. Bian, C. Billie Kiani, Karun Croonenborghs, Tom Subramanian, Aravind Chung, Raymond T. Straub, Beate K. Schuppan, Detlef Ankavay, Maliki Cocquerel, Laurence Schaeffer, Evelyne Goossens, Nicolas Koh, Anna P. Mahajan, Milind Nair, Venugopalan D. Gunasekaran, Ganesh Schwartz, Myron E. Bardeesy, Nabeel Shalek, Alex K. Rozenblatt-Rosen, Orit Regev, Aviv Felli, Emanuele Pessaux, Patrick Tanabe, Kenneth K. Heikenwälder, Mathias Schuster, Catherine Pochet, Nathalie Zeisel, Mirjam B. Fuchs, Bryan C. Hoshida, Yujin Baumert, Thomas F. Nat Commun Article Chronic liver disease and hepatocellular carcinoma (HCC) are life-threatening diseases with limited treatment options. The lack of clinically relevant/tractable experimental models hampers therapeutic discovery. Here, we develop a simple and robust human liver cell-based system modeling a clinical prognostic liver signature (PLS) predicting long-term liver disease progression toward HCC. Using the PLS as a readout, followed by validation in nonalcoholic steatohepatitis/fibrosis/HCC animal models and patient-derived liver spheroids, we identify nizatidine, a histamine receptor H2 (HRH2) blocker, for treatment of advanced liver disease and HCC chemoprevention. Moreover, perturbation studies combined with single cell RNA-Seq analyses of patient liver tissues uncover hepatocytes and HRH2(+), CLEC5A(high), MARCO(low) liver macrophages as potential nizatidine targets. The PLS model combined with single cell RNA-Seq of patient tissues enables discovery of urgently needed targets and therapeutics for treatment of advanced liver disease and cancer prevention. Nature Publishing Group UK 2021-09-17 /pmc/articles/PMC8448834/ /pubmed/34535664 http://dx.doi.org/10.1038/s41467-021-25468-9 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Crouchet, Emilie
Bandiera, Simonetta
Fujiwara, Naoto
Li, Shen
El Saghire, Hussein
Fernández-Vaquero, Mirian
Riedl, Tobias
Sun, Xiaochen
Hirschfield, Hadassa
Jühling, Frank
Zhu, Shijia
Roehlen, Natascha
Ponsolles, Clara
Heydmann, Laura
Saviano, Antonio
Qian, Tongqi
Venkatesh, Anu
Lupberger, Joachim
Verrier, Eloi R.
Sojoodi, Mozhdeh
Oudot, Marine A.
Duong, François H. T.
Masia, Ricard
Wei, Lan
Thumann, Christine
Durand, Sarah C.
González-Motos, Victor
Heide, Danijela
Hetzer, Jenny
Nakagawa, Shigeki
Ono, Atsushi
Song, Won-Min
Higashi, Takaaki
Sanchez, Roberto
Kim, Rosa S.
Bian, C. Billie
Kiani, Karun
Croonenborghs, Tom
Subramanian, Aravind
Chung, Raymond T.
Straub, Beate K.
Schuppan, Detlef
Ankavay, Maliki
Cocquerel, Laurence
Schaeffer, Evelyne
Goossens, Nicolas
Koh, Anna P.
Mahajan, Milind
Nair, Venugopalan D.
Gunasekaran, Ganesh
Schwartz, Myron E.
Bardeesy, Nabeel
Shalek, Alex K.
Rozenblatt-Rosen, Orit
Regev, Aviv
Felli, Emanuele
Pessaux, Patrick
Tanabe, Kenneth K.
Heikenwälder, Mathias
Schuster, Catherine
Pochet, Nathalie
Zeisel, Mirjam B.
Fuchs, Bryan C.
Hoshida, Yujin
Baumert, Thomas F.
A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
title A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
title_full A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
title_fullStr A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
title_full_unstemmed A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
title_short A human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
title_sort human liver cell-based system modeling a clinical prognostic liver signature for therapeutic discovery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8448834/
https://www.ncbi.nlm.nih.gov/pubmed/34535664
http://dx.doi.org/10.1038/s41467-021-25468-9
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