Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system

The development of the cardiac conduction system (CCS) is essential for correct heart function. However, critical details on the cell types populating the CCS in the mammalian heart during the development remain to be resolved. Using single-cell RNA sequencing, we generated a large dataset of transc...

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Main Authors: Ren, H, Zhou, X, Yang, J, Kou, K, Chen, T, Pu, Z, Ye, K, Fan, X, Lei, M, Zhang, D, Kang, X, Fan, Z, Sun, T, Tan, X, Ou, X
Format: Journal article
Language:English
Published: Springer Nature 2023
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author Ren, H
Zhou, X
Yang, J
Kou, K
Chen, T
Pu, Z
Ye, K
Fan, X
Lei, M
Zhang, D
Kang, X
Fan, Z
Sun, T
Tan, X
Ou, X
author_facet Ren, H
Zhou, X
Yang, J
Kou, K
Chen, T
Pu, Z
Ye, K
Fan, X
Lei, M
Zhang, D
Kang, X
Fan, Z
Sun, T
Tan, X
Ou, X
author_sort Ren, H
collection OXFORD
description The development of the cardiac conduction system (CCS) is essential for correct heart function. However, critical details on the cell types populating the CCS in the mammalian heart during the development remain to be resolved. Using single-cell RNA sequencing, we generated a large dataset of transcriptomes of ~0.5 million individual cells isolated from murine hearts at six successive developmental corresponding to the early, middle and late stages of heart development. The dataset provides a powerful library for studying the development of the heart's CCS and other cardiac components. Our initial analysis identified distinct cell types between 20 to 26 cell types across different stages, of which ten are involved in forming the CCS. Our dataset allows researchers to reuse the datasets for data mining and a wide range of analyses. Collectively, our data add valuable transcriptomic resources for further study of cardiac development, such as gene expression, transcriptional regulation and functional gene activity in developing hearts, particularly the CCS.
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spelling oxford-uuid:a8eb5a17-fdc5-4053-bf68-95da71b3c59c2023-12-15T06:37:48ZSingle-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction systemJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:a8eb5a17-fdc5-4053-bf68-95da71b3c59cEnglishSymplectic ElementsSpringer Nature2023Ren, HZhou, XYang, JKou, KChen, TPu, ZYe, KFan, XLei, MZhang, DKang, XFan, ZSun, TTan, XOu, XThe development of the cardiac conduction system (CCS) is essential for correct heart function. However, critical details on the cell types populating the CCS in the mammalian heart during the development remain to be resolved. Using single-cell RNA sequencing, we generated a large dataset of transcriptomes of ~0.5 million individual cells isolated from murine hearts at six successive developmental corresponding to the early, middle and late stages of heart development. The dataset provides a powerful library for studying the development of the heart's CCS and other cardiac components. Our initial analysis identified distinct cell types between 20 to 26 cell types across different stages, of which ten are involved in forming the CCS. Our dataset allows researchers to reuse the datasets for data mining and a wide range of analyses. Collectively, our data add valuable transcriptomic resources for further study of cardiac development, such as gene expression, transcriptional regulation and functional gene activity in developing hearts, particularly the CCS.
spellingShingle Ren, H
Zhou, X
Yang, J
Kou, K
Chen, T
Pu, Z
Ye, K
Fan, X
Lei, M
Zhang, D
Kang, X
Fan, Z
Sun, T
Tan, X
Ou, X
Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system
title Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system
title_full Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system
title_fullStr Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system
title_full_unstemmed Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system
title_short Single-cell RNA sequencing of murine hearts for studying the development of the cardiac conduction system
title_sort single cell rna sequencing of murine hearts for studying the development of the cardiac conduction system
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