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Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses

Human skeletal stem cells (SSCs) have been discovered in fetal and adult long bones. However, the spatiotemporal ontogeny of human embryonic SSCs during early skeletogenesis remains elusive. Here we map the transcriptional landscape of human limb buds and embryonic long bones at single-cell resoluti...

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Autores principales: He, Jian, Yan, Jing, Wang, Jianfang, Zhao, Liangyu, Xin, Qian, Zeng, Yang, Sun, Yuxi, Zhang, Han, Bai, Zhijie, Li, Zongcheng, Ni, Yanli, Gong, Yandong, Li, Yunqiao, He, Han, Bian, Zhilei, Lan, Yu, Ma, Chunyu, Bian, Lihong, Zhu, Heng, Liu, Bing, Yue, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Singapore 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8249634/
https://www.ncbi.nlm.nih.gov/pubmed/33473154
http://dx.doi.org/10.1038/s41422-021-00467-z
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author He, Jian
Yan, Jing
Wang, Jianfang
Zhao, Liangyu
Xin, Qian
Zeng, Yang
Sun, Yuxi
Zhang, Han
Bai, Zhijie
Li, Zongcheng
Ni, Yanli
Gong, Yandong
Li, Yunqiao
He, Han
Bian, Zhilei
Lan, Yu
Ma, Chunyu
Bian, Lihong
Zhu, Heng
Liu, Bing
Yue, Rui
author_facet He, Jian
Yan, Jing
Wang, Jianfang
Zhao, Liangyu
Xin, Qian
Zeng, Yang
Sun, Yuxi
Zhang, Han
Bai, Zhijie
Li, Zongcheng
Ni, Yanli
Gong, Yandong
Li, Yunqiao
He, Han
Bian, Zhilei
Lan, Yu
Ma, Chunyu
Bian, Lihong
Zhu, Heng
Liu, Bing
Yue, Rui
author_sort He, Jian
collection PubMed
description Human skeletal stem cells (SSCs) have been discovered in fetal and adult long bones. However, the spatiotemporal ontogeny of human embryonic SSCs during early skeletogenesis remains elusive. Here we map the transcriptional landscape of human limb buds and embryonic long bones at single-cell resolution to address this fundamental question. We found remarkable heterogeneity within human limb bud mesenchyme and epithelium, and aligned them along the proximal–distal and anterior–posterior axes using known marker genes. Osteo-chondrogenic progenitors first appeared in the core limb bud mesenchyme, which give rise to multiple populations of stem/progenitor cells in embryonic long bones undergoing endochondral ossification. Importantly, a perichondrial embryonic skeletal stem/progenitor cell (eSSPC) subset was identified, which could self-renew and generate the osteochondral lineage cells, but not adipocytes or hematopoietic stroma. eSSPCs are marked by the adhesion molecule CADM1 and highly enriched with FOXP1/2 transcriptional network. Interestingly, neural crest-derived cells with similar phenotypic markers and transcriptional networks were also found in the sagittal suture of human embryonic calvaria. Taken together, this study revealed the cellular heterogeneity and lineage hierarchy during human embryonic skeletogenesis, and identified distinct skeletal stem/progenitor cells that orchestrate endochondral and intramembranous ossification.
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spelling pubmed-82496342021-07-20 Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses He, Jian Yan, Jing Wang, Jianfang Zhao, Liangyu Xin, Qian Zeng, Yang Sun, Yuxi Zhang, Han Bai, Zhijie Li, Zongcheng Ni, Yanli Gong, Yandong Li, Yunqiao He, Han Bian, Zhilei Lan, Yu Ma, Chunyu Bian, Lihong Zhu, Heng Liu, Bing Yue, Rui Cell Res Article Human skeletal stem cells (SSCs) have been discovered in fetal and adult long bones. However, the spatiotemporal ontogeny of human embryonic SSCs during early skeletogenesis remains elusive. Here we map the transcriptional landscape of human limb buds and embryonic long bones at single-cell resolution to address this fundamental question. We found remarkable heterogeneity within human limb bud mesenchyme and epithelium, and aligned them along the proximal–distal and anterior–posterior axes using known marker genes. Osteo-chondrogenic progenitors first appeared in the core limb bud mesenchyme, which give rise to multiple populations of stem/progenitor cells in embryonic long bones undergoing endochondral ossification. Importantly, a perichondrial embryonic skeletal stem/progenitor cell (eSSPC) subset was identified, which could self-renew and generate the osteochondral lineage cells, but not adipocytes or hematopoietic stroma. eSSPCs are marked by the adhesion molecule CADM1 and highly enriched with FOXP1/2 transcriptional network. Interestingly, neural crest-derived cells with similar phenotypic markers and transcriptional networks were also found in the sagittal suture of human embryonic calvaria. Taken together, this study revealed the cellular heterogeneity and lineage hierarchy during human embryonic skeletogenesis, and identified distinct skeletal stem/progenitor cells that orchestrate endochondral and intramembranous ossification. Springer Singapore 2021-01-20 2021-07 /pmc/articles/PMC8249634/ /pubmed/33473154 http://dx.doi.org/10.1038/s41422-021-00467-z Text en © Center for Excellence in Molecular Cell Science, CAS 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
He, Jian
Yan, Jing
Wang, Jianfang
Zhao, Liangyu
Xin, Qian
Zeng, Yang
Sun, Yuxi
Zhang, Han
Bai, Zhijie
Li, Zongcheng
Ni, Yanli
Gong, Yandong
Li, Yunqiao
He, Han
Bian, Zhilei
Lan, Yu
Ma, Chunyu
Bian, Lihong
Zhu, Heng
Liu, Bing
Yue, Rui
Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
title Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
title_full Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
title_fullStr Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
title_full_unstemmed Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
title_short Dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
title_sort dissecting human embryonic skeletal stem cell ontogeny by single-cell transcriptomic and functional analyses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8249634/
https://www.ncbi.nlm.nih.gov/pubmed/33473154
http://dx.doi.org/10.1038/s41422-021-00467-z
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