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hECA: The cell-centric assembly of a cell atlas

The accumulation of massive single-cell omics data provides growing resources for building biomolecular atlases of all cells of human organs or the whole body. The true assembly of a cell atlas should be cell-centric rather than file-centric. We developed a unified informatics framework for seamless...

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Detalles Bibliográficos
Autores principales: Chen, Sijie, Luo, Yanting, Gao, Haoxiang, Li, Fanhong, Chen, Yixin, Li, Jiaqi, You, Renke, Hao, Minsheng, Bian, Haiyang, Xi, Xi, Li, Wenrui, Li, Weiyu, Ye, Mingli, Meng, Qiuchen, Zou, Ziheng, Li, Chen, Li, Haochen, Zhang, Yangyuan, Cui, Yanfei, Wei, Lei, Chen, Fufeng, Wang, Xiaowo, Lv, Hairong, Hua, Kui, Jiang, Rui, Zhang, Xuegong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9114628/
https://www.ncbi.nlm.nih.gov/pubmed/35602947
http://dx.doi.org/10.1016/j.isci.2022.104318
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author Chen, Sijie
Luo, Yanting
Gao, Haoxiang
Li, Fanhong
Chen, Yixin
Li, Jiaqi
You, Renke
Hao, Minsheng
Bian, Haiyang
Xi, Xi
Li, Wenrui
Li, Weiyu
Ye, Mingli
Meng, Qiuchen
Zou, Ziheng
Li, Chen
Li, Haochen
Zhang, Yangyuan
Cui, Yanfei
Wei, Lei
Chen, Fufeng
Wang, Xiaowo
Lv, Hairong
Hua, Kui
Jiang, Rui
Zhang, Xuegong
author_facet Chen, Sijie
Luo, Yanting
Gao, Haoxiang
Li, Fanhong
Chen, Yixin
Li, Jiaqi
You, Renke
Hao, Minsheng
Bian, Haiyang
Xi, Xi
Li, Wenrui
Li, Weiyu
Ye, Mingli
Meng, Qiuchen
Zou, Ziheng
Li, Chen
Li, Haochen
Zhang, Yangyuan
Cui, Yanfei
Wei, Lei
Chen, Fufeng
Wang, Xiaowo
Lv, Hairong
Hua, Kui
Jiang, Rui
Zhang, Xuegong
author_sort Chen, Sijie
collection PubMed
description The accumulation of massive single-cell omics data provides growing resources for building biomolecular atlases of all cells of human organs or the whole body. The true assembly of a cell atlas should be cell-centric rather than file-centric. We developed a unified informatics framework for seamless cell-centric data assembly and built the human Ensemble Cell Atlas (hECA) from scattered data. hECA v1.0 assembled 1,093,299 labeled human cells from 116 published datasets, covering 38 organs and 11 systems. We invented three new methods of atlas applications based on the cell-centric assembly: “in data” cell sorting for targeted data retrieval with customizable logic expressions, “quantitative portraiture” for multi-view representations of biological entities, and customizable reference creation for generating references for automatic annotations. Case studies on agile construction of user-defined sub-atlases and “in data” investigation of CAR-T off-targets in multiple organs showed the great potential enabled by the cell-centric ensemble atlas.
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spelling pubmed-91146282022-05-19 hECA: The cell-centric assembly of a cell atlas Chen, Sijie Luo, Yanting Gao, Haoxiang Li, Fanhong Chen, Yixin Li, Jiaqi You, Renke Hao, Minsheng Bian, Haiyang Xi, Xi Li, Wenrui Li, Weiyu Ye, Mingli Meng, Qiuchen Zou, Ziheng Li, Chen Li, Haochen Zhang, Yangyuan Cui, Yanfei Wei, Lei Chen, Fufeng Wang, Xiaowo Lv, Hairong Hua, Kui Jiang, Rui Zhang, Xuegong iScience Article The accumulation of massive single-cell omics data provides growing resources for building biomolecular atlases of all cells of human organs or the whole body. The true assembly of a cell atlas should be cell-centric rather than file-centric. We developed a unified informatics framework for seamless cell-centric data assembly and built the human Ensemble Cell Atlas (hECA) from scattered data. hECA v1.0 assembled 1,093,299 labeled human cells from 116 published datasets, covering 38 organs and 11 systems. We invented three new methods of atlas applications based on the cell-centric assembly: “in data” cell sorting for targeted data retrieval with customizable logic expressions, “quantitative portraiture” for multi-view representations of biological entities, and customizable reference creation for generating references for automatic annotations. Case studies on agile construction of user-defined sub-atlases and “in data” investigation of CAR-T off-targets in multiple organs showed the great potential enabled by the cell-centric ensemble atlas. Elsevier 2022-04-28 /pmc/articles/PMC9114628/ /pubmed/35602947 http://dx.doi.org/10.1016/j.isci.2022.104318 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Sijie
Luo, Yanting
Gao, Haoxiang
Li, Fanhong
Chen, Yixin
Li, Jiaqi
You, Renke
Hao, Minsheng
Bian, Haiyang
Xi, Xi
Li, Wenrui
Li, Weiyu
Ye, Mingli
Meng, Qiuchen
Zou, Ziheng
Li, Chen
Li, Haochen
Zhang, Yangyuan
Cui, Yanfei
Wei, Lei
Chen, Fufeng
Wang, Xiaowo
Lv, Hairong
Hua, Kui
Jiang, Rui
Zhang, Xuegong
hECA: The cell-centric assembly of a cell atlas
title hECA: The cell-centric assembly of a cell atlas
title_full hECA: The cell-centric assembly of a cell atlas
title_fullStr hECA: The cell-centric assembly of a cell atlas
title_full_unstemmed hECA: The cell-centric assembly of a cell atlas
title_short hECA: The cell-centric assembly of a cell atlas
title_sort heca: the cell-centric assembly of a cell atlas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9114628/
https://www.ncbi.nlm.nih.gov/pubmed/35602947
http://dx.doi.org/10.1016/j.isci.2022.104318
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