Single-Cell Transcriptome Unveils Unique Transcriptomic Signatures of Human Organ-Specific Endothelial Cells

We constructed an atlas of >210,000 ECs from 38 regions in 24 human tissues. ECs derived from different tissues show significant differences in transcriptome, phenotype, metabolism and transcriptional regulation. Arterial, venous, and lymphatic ECs shared more markers in more tissues than did capillary ECs, from which the heterogeneity of capillary ECs makes them more potential as a target for drug targeting. ECs from different tissue and vascular beds are associated with specific diseases. We found that the tissue specificity of ECs senescence is more determined by the region rather than the tissue type. Our analysis also revealed that sex differences in ECs may partly determine sex differences in brain ECs aging. The ECs atlas can be used to identify EC subclusters in single cell data of body tissues or organoids, screen tissue-specific targeted drugs, as well as provides a powerful discovery tool and resource value.

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Publication Details

Journal
China National GeneBank DataBase
Published
2026-09-22
DOI
https://doi.org/10.26036/cnp0006279
Primary Topic
Single-cell and spatial transcriptomics
Type
article
Field-Weighted Citation Impact
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article

Single-Cell Transcriptome Unveils Unique Transcriptomic Signatures of Human Organ-Specific Endothelial Cells

牛瑞泽(niuruize)
China National GeneBank DataBase
Single-cell and spatial transcriptomics
article

Single-Cell Transcriptome Unveils Unique Transcriptomic Signatures of Human Organ-Specific Endothelial Cells

牛瑞泽(niuruize)
article en

Abstract

We constructed an atlas of >210,000 ECs from 38 regions in 24 human tissues. ECs derived from different tissues show significant differences in transcriptome, phenotype, metabolism and transcriptional regulation. Arterial, venous, and lymphatic ECs shared more markers in more tissues than did capillary ECs, from which the heterogeneity of capillary ECs makes them more potential as a target for drug targeting. ECs from different tissue and vascular beds are associated with specific diseases. We found that the tissue specificity of ECs senescence is more determined by the region rather than the tissue type. Our analysis also revealed that sex differences in ECs may partly determine sex differences in brain ECs aging. The ECs atlas can be used to identify EC subclusters in single cell data of body tissues or organoids, screen tissue-specific targeted drugs, as well as provides a powerful discovery tool and resource value.

China National GeneBank DataBase
Decent work and economic growth
Openalex Percentile: Top 18%
Single-cell and spatial transcriptomics
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