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May 13, 2026Communications Biology1 citationsOpen Access

Transcriptional landscape of pulmonary artery endothelium reveals subpopulation- and disease-specific remodeling signatures

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TLThomas LinsFVFrancesco ValzanoEFElisabeth Fließer

Key Points

  • To analyze the transcriptional profiles of endothelial cells in the pulmonary artery and their association with pulmonary hypertension.
  • Conducted single-cell profiling of human pulmonary artery endothelial cells from healthy individuals and patients with pulmonary hypertension.
  • Identified endothelial cell subsets based on distinct biological processes related to disease states.
  • Improved understanding of the endothelial heterogeneity and pathology-specific transcriptional programs.
  • Identified three major subsets of endothelial cells in healthy and remodeled pulmonary arteries.
  • Pulmonary arterial hypertension and pulmonary fibrosis altered the composition of endothelial cell subsets.
  • Discovered that specific subsets were linked to dysfunctions such as angiogenesis and lipid metabolism.

Abstract

Abstract The physiological state of endothelial cells (ECs) is a central determinant of organ health. Distinct endothelial phenotypes and transcriptional programs are linked to vessel size and anatomical location, but it remains unclear how this intrinsic heterogeneity is organized within a particular niche. We performed compartment-specific single-cell profiling of human pulmonary artery (PA) ECs from healthy donors and from patients with two clinically divergent forms of pulmonary hypertension (PH): pulmonary arterial hypertension (PAH) and pulmonary hypertension associated with pulmonary fibrosis (PH-PF). We identified and localized three major EC subsets in healthy and remodeled PAs termed immuno-, vascular tone- and vascular plasticity modulatory, reflecting their enrichment for distinct biological processes. Expression signatures defining each subset were shared with other arterial beds, including the aorta and coronary arteries, and murine PA. Both PAH and PH-PF altered PAEC subset compositions, with increased immunomodulatory and decreased vascular plasticity modulatory PAECs. PH-PF PAECs were generally defined by dysregulated angiogenesis and antigen presentation, whereas PAH PAECs exhibited lipid metabolic dysfunction and enhanced vasoregulatory signaling. By uncovering endothelial heterogeneity and pathology-specific transcriptional programs in PAs, this study underscores the need of disease-specific therapeutic targeting.

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Cite This Study

Lins et al. (2026) studied this question.

synapsesocial.com/papers/6a03cbbe1c527af8f1ecf763https://doi.org/10.1038/s42003-026-10204-0
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