Zhu Zimo, Zheng Rongbin, Yu Yang, Zhang Lili, Chen Kaifu
bioRxiv. 2025 Aug 19:2025.08.15.670370. doi: 10.1101/2025.08.15.670370.
Endothelial cells (ECs) play complex roles across tissues and vessel types. Yet, systematic investigations of EC heterogeneity in the combined context of vessel type and tissue microenvironment are still largely lacking. We integrated over three million single cells of scRNA-seq datasets in 15 human tissues and found that ECs in some tissues (e.g., heart and kidney) exhibited greater tissue specificity, while others displayed more substantial vessel specificity. We developed a computational pipeline to analyze cell-cell communications (CCC) mediated by metabolites or proteins to explore microenvironmental regulation. Interestingly, our results showed that CCC events involving ECs varied vastly across tissues, highlighting tissue-specific EC interactions. Using topic modeling, we identified CCC patterns, termed CCC topics, representing metabolite- and protein-mediated interactions between ECs and other tissue-resident cells. Most CCC topics exhibited high tissue specificity, potentially explaining microenvironmental regulations for EC heterogeneity. The work systematically investigates EC heterogeneity and provides insights into how EC heterogeneity was regulated across diverse tissue microenvironments.
内皮细胞(ECs)在不同组织和血管类型中发挥着复杂的作用。然而,在血管类型和组织微环境的综合背景下,对EC异质性的系统研究仍然十分匮乏。我们整合了来自15种人类组织的超过300万个单细胞RNA测序(scRNA-seq)数据集,发现某些组织(如心脏和肾脏)中的EC表现出更高的组织特异性,而其他组织中的EC则表现出更强的血管特异性。我们开发了一种计算流程来分析由代谢物或蛋白质介导的细胞间通讯(CCC),以探索微环境调控。有趣的是,我们的结果表明,涉及EC的CCC事件在不同组织中差异巨大,突出了组织特异性的EC相互作用。通过主题建模,我们识别出了CCC模式,称为CCC主题,代表了EC与其他组织驻留细胞之间由代谢物和蛋白质介导的相互作用。大多数CCC主题表现出高度的组织特异性,这可能解释了EC异质性的微环境调控机制。这项工作系统地研究了EC异质性,并深入探讨了不同组织微环境中EC异质性是如何被调控的。