Cargando…

Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling

Cell transplantation holds considerable promise for end‐stage liver diseases but identifying a suitable, transplantable cell type has been problematic. Here, we describe a novel type of mesenchymal stem cells (MSCs) from human adipose tissue. These cells are different from previously reported MSCs,...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Hongling, Zhu, Li, Chen, Huimin, Li, Tangping, Han, Qin, Wang, Shihua, Yao, Xinglei, Feng, Hongli, Fan, Linyuan, Gao, Shaorong, Boyd, Richard, Cao, Xu, Zhu, Ping, Li, Jing, Keating, Armand, Su, Xiaodong, Zhao, Robert Chunhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6216430/
https://www.ncbi.nlm.nih.gov/pubmed/30272835
http://dx.doi.org/10.1002/sctm.17-0273
_version_ 1783368290486190080
author Li, Hongling
Zhu, Li
Chen, Huimin
Li, Tangping
Han, Qin
Wang, Shihua
Yao, Xinglei
Feng, Hongli
Fan, Linyuan
Gao, Shaorong
Boyd, Richard
Cao, Xu
Zhu, Ping
Li, Jing
Keating, Armand
Su, Xiaodong
Zhao, Robert Chunhua
author_facet Li, Hongling
Zhu, Li
Chen, Huimin
Li, Tangping
Han, Qin
Wang, Shihua
Yao, Xinglei
Feng, Hongli
Fan, Linyuan
Gao, Shaorong
Boyd, Richard
Cao, Xu
Zhu, Ping
Li, Jing
Keating, Armand
Su, Xiaodong
Zhao, Robert Chunhua
author_sort Li, Hongling
collection PubMed
description Cell transplantation holds considerable promise for end‐stage liver diseases but identifying a suitable, transplantable cell type has been problematic. Here, we describe a novel type of mesenchymal stem cells (MSCs) from human adipose tissue. These cells are different from previously reported MSCs, they are in the euchromatin state with epigenetic multipotency, and express pluripotent markers MYC, KLF4, and GMNN. Most of the genes associated with germ layer specification are modified by H3K4me3 or co‐modified by H3K4me3 and H3K27me3. We named this new type of MSCs as adult multipotent adipose‐derived stem cells (M‐ADSCs). Using a four‐step nonviral system, M‐ADSCs can be efficiently Induced into hepatocyte like cells with expression of hepatocyte markers, drug metabolizing enzymes and transporters, and the other basic functional properties including albumin (ALB) secretion, glycogen storage, detoxification, low‐density lipoprotein intake, and lipids accumulation. In vivo both M‐ADSCs‐derived hepatoblasts and hepatocytes could form vascularized liver‐like tissue, secrete ALB and express metabolic enzymes. Single‐cell RNA‐seq was used to investigate the important stages in this conversion. M‐ADSCs could be converted to a functionally multipotent state during the preinduction stage without undergoing reprogramming process. Our findings provide important insights into mechanisms underlying cell development and conversion. stem cells translational medicine 2018;7:792–805
format Online
Article
Text
id pubmed-6216430
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-62164302018-11-08 Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling Li, Hongling Zhu, Li Chen, Huimin Li, Tangping Han, Qin Wang, Shihua Yao, Xinglei Feng, Hongli Fan, Linyuan Gao, Shaorong Boyd, Richard Cao, Xu Zhu, Ping Li, Jing Keating, Armand Su, Xiaodong Zhao, Robert Chunhua Stem Cells Transl Med Translational Research Articles and Reviews Cell transplantation holds considerable promise for end‐stage liver diseases but identifying a suitable, transplantable cell type has been problematic. Here, we describe a novel type of mesenchymal stem cells (MSCs) from human adipose tissue. These cells are different from previously reported MSCs, they are in the euchromatin state with epigenetic multipotency, and express pluripotent markers MYC, KLF4, and GMNN. Most of the genes associated with germ layer specification are modified by H3K4me3 or co‐modified by H3K4me3 and H3K27me3. We named this new type of MSCs as adult multipotent adipose‐derived stem cells (M‐ADSCs). Using a four‐step nonviral system, M‐ADSCs can be efficiently Induced into hepatocyte like cells with expression of hepatocyte markers, drug metabolizing enzymes and transporters, and the other basic functional properties including albumin (ALB) secretion, glycogen storage, detoxification, low‐density lipoprotein intake, and lipids accumulation. In vivo both M‐ADSCs‐derived hepatoblasts and hepatocytes could form vascularized liver‐like tissue, secrete ALB and express metabolic enzymes. Single‐cell RNA‐seq was used to investigate the important stages in this conversion. M‐ADSCs could be converted to a functionally multipotent state during the preinduction stage without undergoing reprogramming process. Our findings provide important insights into mechanisms underlying cell development and conversion. stem cells translational medicine 2018;7:792–805 John Wiley & Sons, Inc. 2018-09-11 /pmc/articles/PMC6216430/ /pubmed/30272835 http://dx.doi.org/10.1002/sctm.17-0273 Text en © 2018 The Authors stem cells translational medicine published by Wiley Periodicals, Inc. on behalf of AlphaMed Press This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Translational Research Articles and Reviews
Li, Hongling
Zhu, Li
Chen, Huimin
Li, Tangping
Han, Qin
Wang, Shihua
Yao, Xinglei
Feng, Hongli
Fan, Linyuan
Gao, Shaorong
Boyd, Richard
Cao, Xu
Zhu, Ping
Li, Jing
Keating, Armand
Su, Xiaodong
Zhao, Robert Chunhua
Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling
title Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling
title_full Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling
title_fullStr Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling
title_full_unstemmed Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling
title_short Generation of Functional Hepatocytes from Human Adipose‐Derived MYC(+) KLF4(+) GMNN(+) Stem Cells Analyzed by Single‐Cell RNA‐Seq Profiling
title_sort generation of functional hepatocytes from human adipose‐derived myc(+) klf4(+) gmnn(+) stem cells analyzed by single‐cell rna‐seq profiling
topic Translational Research Articles and Reviews
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6216430/
https://www.ncbi.nlm.nih.gov/pubmed/30272835
http://dx.doi.org/10.1002/sctm.17-0273
work_keys_str_mv AT lihongling generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT zhuli generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT chenhuimin generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT litangping generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT hanqin generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT wangshihua generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT yaoxinglei generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT fenghongli generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT fanlinyuan generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT gaoshaorong generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT boydrichard generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT caoxu generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT zhuping generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT lijing generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT keatingarmand generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT suxiaodong generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling
AT zhaorobertchunhua generationoffunctionalhepatocytesfromhumanadiposederivedmycklf4gmnnstemcellsanalyzedbysinglecellrnaseqprofiling