Single‐cell RNA sequencing reveals new subtypes of lens superficial tissue in humans
Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single‐nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single‐...
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Published in | Cell proliferation Vol. 56; no. 11; p. e13477 |
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Main Authors | , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
England
John Wiley & Sons, Inc
01.11.2023
John Wiley and Sons Inc |
Subjects | |
Online Access | Get full text |
ISSN | 0960-7722 1365-2184 1365-2184 |
DOI | 10.1111/cpr.13477 |
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Abstract | Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single‐nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single‐cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single‐cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4
+
cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation. |
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AbstractList | Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single-nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single-cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single-cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4+ cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation. Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single‐nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single‐cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single‐cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4 + cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation. scRNA‐seq reveals three cell types in lens superficial tissue with two differentiation trajectories between them, and a cluster might be lens epithelial stem/progenitor cell. Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single-nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single-cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single-cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4+ cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation.Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single-nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single-cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single-cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4+ cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation. Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single‐nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single‐cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single‐cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4 + cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation. Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single-nucleus RNA sequencing, whether subtypes of lens stem/progenitor cells exist among epithelial cells and the molecular characteristics of cell differentiation of the human lens remain unclear. Single-cell RNA sequencing is a powerful tool to analyse the heterogeneity of tissues at the single cell level, leading to a better understanding of the processes of cell differentiation. By profiling 18,596 cells in human lens superficial tissue through single-cell sequencing, we identified two subtypes of lens epithelial cells that specifically expressed C8orf4 and ADAMTSL4 with distinct spatial localization, a new type of fibre cells located directly adjacent to the epithelium, and a subpopulation of ADAMTSL4 cells that might be lens epithelial stem/progenitor cells. We also found two trajectories of lens epithelial cell differentiation and changes of some important genes during differentiation. |
Author | Feng, Yi Xu, Yi‐Tong Liu, Jia‐Sheng Huang, Xiu‐Feng Xu, Jia‐Lin Zhang, Meng‐Di Zhu, Kai‐Yi Lin, Lei Zhang, Lu Tong, Xiao‐Yu Su, Jian‐Zhong Zhu, Meng‐Chao Hu, Wei Feng, Ke Li, Jin Yang, Qing‐Wen |
AuthorAffiliation | 4 Zhejiang Provincial Clinical Research Center for Pediatric Disease The Second Affiliated Hospital of Wenzhou Medical University Wenzhou Zhejiang China 2 National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China 1 State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China 3 Department of Integrative Medicine and Neurobiology, School of Basic Medical Sciences, Institutes of Brain Science, Brain Science Collaborative Innovation Center, State Key Laboratory of Medical Neurobiology, Institute of Acupuncture and Moxibustion, Fudan Institutes of Integrative Medicine Fudan University Shanghai China |
AuthorAffiliation_xml | – name: 4 Zhejiang Provincial Clinical Research Center for Pediatric Disease The Second Affiliated Hospital of Wenzhou Medical University Wenzhou Zhejiang China – name: 2 National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – name: 1 State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China – name: 3 Department of Integrative Medicine and Neurobiology, School of Basic Medical Sciences, Institutes of Brain Science, Brain Science Collaborative Innovation Center, State Key Laboratory of Medical Neurobiology, Institute of Acupuncture and Moxibustion, Fudan Institutes of Integrative Medicine Fudan University Shanghai China |
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Wenzhou China – sequence: 7 givenname: Yi‐Tong surname: Xu fullname: Xu, Yi‐Tong organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – sequence: 8 givenname: Jia‐Sheng surname: Liu fullname: Liu, Jia‐Sheng organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – sequence: 9 givenname: Meng‐Di surname: Zhang fullname: Zhang, Meng‐Di organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – sequence: 10 givenname: Xiao‐Yu surname: Tong fullname: Tong, Xiao‐Yu organization: Zhejiang Provincial Clinical Research Center for Pediatric Disease The Second Affiliated Hospital of Wenzhou Medical University Wenzhou Zhejiang China – sequence: 11 givenname: Kai‐Yi surname: Zhu fullname: Zhu, Kai‐Yi organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – sequence: 12 givenname: Ke surname: Feng fullname: Feng, Ke organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – sequence: 13 givenname: Yi surname: Feng fullname: Feng, Yi organization: Department of Integrative Medicine and Neurobiology, School of Basic Medical Sciences, Institutes of Brain Science, Brain Science Collaborative Innovation Center, State Key Laboratory of Medical Neurobiology, Institute of Acupuncture and Moxibustion, Fudan Institutes of Integrative Medicine Fudan University Shanghai China – sequence: 14 givenname: Jian‐Zhong surname: Su fullname: Su, Jian‐Zhong organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China – sequence: 15 givenname: Xiu‐Feng surname: Huang fullname: Huang, Xiu‐Feng organization: Zhejiang Provincial Clinical Research Center for Pediatric Disease The Second Affiliated Hospital of Wenzhou Medical University Wenzhou Zhejiang China – sequence: 16 givenname: Jin surname: Li fullname: Li, Jin organization: State Key Laboratory of Ophthalmology, Optometry and Visual Science, Eye Hospital Wenzhou Medical University Wenzhou China, National Clinical Research Center for Ocular Diseases, Eye Hospital Wenzhou Medical University Wenzhou China |
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Copyright | 2023 The Authors. Cell Proliferation published by Beijing Institute for Stem Cell and Regenerative Medicine and John Wiley & Sons Ltd. 2023. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. 2023 The Authors. published by Beijing Institute for Stem Cell and Regenerative Medicine and John Wiley & Sons Ltd. |
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Snippet | Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single‐nucleus RNA sequencing, whether subtypes of lens... Although the cell atlas of the human ocular anterior segment of the human eye was revealed by single-nucleus RNA sequencing, whether subtypes of lens... |
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SubjectTerms | Antibodies Cell differentiation Cells Cells (biology) Differentiation (biology) Epithelial cells Epithelium Gene sequencing Genes Genomics Heterogeneity Lenses Localization Original Progenitor cells Ribonucleic acid RNA Spatial discrimination Three dimensional imaging |
Title | Single‐cell RNA sequencing reveals new subtypes of lens superficial tissue in humans |
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