4.7 Review

Understanding the Adult Mammalian Heart at Single-Cell RNA-Seq Resolution

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.645276

关键词

single-cell RNAseq; heart; infarction; cardiac cell heterogeneity; transcriptomics

资金

  1. Spanish Ministry of Science, Innovation and Universities [RTI2018-095410-B-I00]
  2. University of Malaga [UMA18-FEDERJA-146]
  3. Carlos III Institute of Health [RD16/0011/0030]
  4. Spanish Ministry of Science, Innovation and Universities FPU fellowship [FPU18/05219]
  5. University of Malaga (Incorporacion de doctores from the I Plan Propio de Incorporacion de Doctores, 2020)

向作者/读者索取更多资源

Over the past decade, extensive efforts have been made to understand cardiac cell genetic and functional diversity, leading to the utilization of single-cell RNA-Seq technology to redefine cardiac cell subpopulations and even identify novel cell types. These findings are changing the understanding of cell composition and the identification of potential therapeutic targets for different cardiac diseases.
During the last decade, extensive efforts have been made to comprehend cardiac cell genetic and functional diversity. Such knowledge allows for the definition of the cardiac cellular interactome as a reasonable strategy to increase our understanding of the normal and pathologic heart. Previous experimental approaches including cell lineage tracing, flow cytometry, and bulk RNA-Seq have often tackled the analysis of cardiac cell diversity as based on the assumption that cell types can be identified by the expression of a single gene. More recently, however, the emergence of single-cell RNA-Seq technology has led us to explore the diversity of individual cells, enabling the cardiovascular research community to redefine cardiac cell subpopulations and identify relevant ones, and even novel cell types, through their cell-specific transcriptomic signatures in an unbiased manner. These findings are changing our understanding of cell composition and in consequence the identification of potential therapeutic targets for different cardiac diseases. In this review, we provide an overview of the continuously changing cardiac cellular landscape, traveling from the pre-single-cell RNA-Seq times to the single cell-RNA-Seq revolution, and discuss the utilities and limitations of this technology.

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