Examining the Development of Chronic Thromboembolic Pulmonary Hypertension at the Single-Cell Level

The mechanism of chronic thromboembolic pulmonary hypertension (CTEPH) is known to be multifactorial but remains incompletely understood. In this study, single-cell RNA sequencing, which facilitates the identification of molecular profiles of samples on an individual cell level, was applied to inves...

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Veröffentlicht in:Hypertension (Dallas, Tex. 1979) Tex. 1979), 2022-03, Vol.79 (3), p.562-574
Hauptverfasser: Miao, Ran, Dong, Xingbei, Gong, Juanni, Li, Yidan, Guo, Xiaojuan, Wang, Jianfeng, Huang, Qiang, Wang, Ying, Li, Jifeng, Yang, Suqiao, Kuang, Tuguang, Liu, Min, Wan, Jun, Zhai, Zhenguo, Zhong, Jiuchang, Yang, Yuanhua
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Sprache:eng
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Zusammenfassung:The mechanism of chronic thromboembolic pulmonary hypertension (CTEPH) is known to be multifactorial but remains incompletely understood. In this study, single-cell RNA sequencing, which facilitates the identification of molecular profiles of samples on an individual cell level, was applied to investigate individual cell types in pulmonary endarterectomized tissues from 5 patients with CTEPH. The order of single-cell types was then traced along the developmental trajectory of CTEPH by trajectory inference analysis, and intercellular communication was characterized by analysis of ligand-receptor pairs between cell types. Finally, comprehensive bioinformatics tools were used to analyze possible functions of branch-specific cell types and the underlying mechanisms. Eleven cell types were identified, with immune-related cell types (T cells, natural killer cells, macrophages, and mast cells) distributed in the left (early) branch of the pseudotime tree, cancer stem cells, and CRISPLD2+ cells as intermediate cell types, and classic disease-related cell types (fibroblasts, smooth muscle cells, myofibroblasts, and endothelial cells) in the right (later) branch. Ligand-receptor interactions revealed close communication between macrophages and disease-related cell types as well as between smooth muscle cells and fibroblasts or endothelial cells. Moreover, the ligands and receptors were significantly enriched in key pathways such as the PI3K/Akt signaling pathway. Furthermore, highly expressed genes specific to the undefined cell type were significantly enriched in important functions associated with regulation of endoplasmic reticulum stress. This single-cell RNA sequencing analysis revealed the order of single cells along a developmental trajectory in CTEPH as well as close communication between different cell types in CTEPH pathogenesis.
ISSN:0194-911X
1524-4563
DOI:10.1161/HYPERTENSIONAHA.121.18105