Related Experiment Video
Updated: May 4, 2026

Visualizing Lung Cellular Adaptations during Combined Ozone and LPS Induced Murine Acute Lung Injury
Published on: March 21, 2021
Capillary Endothelial Cell Subtypes in the Lung: Markers and Response to Developmental Lung Injury
Abhijeet Thakur1, Geremy Clair2, Liang Zhang1
1Department of Pediatrics, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts.
Insights
Bronchopulmonary dysplasia (BPD) involves disrupted lung microvascular growth. This study identifies specific cell markers and reveals altered endothelial cell populations and proliferation in BPD models, offering insights into neonatal lung injury.
Area of Science:
- Pulmonary Medicine
- Developmental Biology
- Cell Biology
Background:
- Bronchopulmonary dysplasia (BPD) is a chronic lung disease in preterm infants characterized by disrupted microvascular growth, hindering alveologenesis.
- Pulmonary microvascular endothelial cells (ECs) comprise two subpopulations: general capillary (gCap) and aerocyte (aCap) ECs.
Purpose of the Study:
- To validate protein markers for gCap and aCap ECs.
- To investigate the abundance and proliferation of gCap and aCap ECs during lung development and in BPD models.
- To explore translational insights using non-human primate (NHP) models.
Main Methods:
- Protein-level validation of gCap (GPIHBP1, PLVAP, CD93) and aCap (CA4, HPGD) markers.
- Analysis of EC marker abundance and proliferation in murine and NHP lungs during development and in BPD models.
- Utilized NHP models for translational relevance.
Main Results:
- CA4 and HPGD confirmed as specific aCap markers; gCap markers found in non-microvascular ECs.
- aCap marker abundance increased during NHP lung development; BPD lungs showed decreased aCap markers and increased gCap markers.
- BPD lungs exhibited altered EC proliferation, with increased gCap proliferation compared to controls.
Conclusions:
- Distinct regulation patterns of gCap and aCap ECs exist during lung development.
- BPD is associated with significant alterations in pulmonary microvascular EC subpopulations and their proliferation.
- NHP models provide valuable translational insights into BPD pathogenesis and potential therapeutic targets.
Abstract:
Bronchopulmonary dysplasia (BPD) is a chronic lung disease that affects preterm infants. Disrupted microvascular growth is a well-recognized pathologic feature of BPD, which plays a critical role in arrested alveologenesis. Recent studies have identified two subpopulations of pulmonary microvascular endothelial cells (ECs): general capillary (gCap) and aerocyte (aCap) cells. In this study, we validated proposed markers for gCap (GPIHBP1, PLVAP, CD93) and aCap (CA4, HPGD) at the protein level and investigated their abundance during late-stage lung development in murine and nonhuman primate (NHP) lungs. We also examined alterations in the abundance and proliferation of gCap and aCap cells in NHP and murine models of BPD. Our studies confirmed CA4 and HPGD as specific markers for aCap, and all three putative gCap markers were also detected in nonmicrovascular ECs. All markers except for HPGD showed a gradual increase in abundance during the saccular and alveolar stages of development in NHP lungs. In the NHP model of BPD, the abundance of both aCap markers and GPIHBP1 were decreased, whereas those of PLVAP and CD93 were increased. Additionally, there was an emergence of CA4+HPGD- aCap cells in BPD lungs. In late-stage control lungs, aCap proliferation was more robust than gCap proliferation, whereas no significant differences were observed between aCap and gCap proliferation rates in NHP BPD. Notably, in BPD lungs, gCap proliferation was more robust compared with control lungs. This study provides new insights into the distinct regulation patterns of microvascular ECs during lung development and neonatal lung injury in a translationally relevant NHP model.
More Related Videos
Related Concept Videos
Regulation of Angiogenesis and Blood Supply
Selectins
Capillaries and Their Types
Pulmonary Hypertension: Classification and Pathogenesis
There are various classifications for PH, each relating to different underlying causes and also...
Alveoli and Alveolar Ducts

