Authors
Maya Cohen, Liana Haigis, Rebecca C Blum, Allyson Sherman-Roe, Mandy Perreira, Havovi Chichger, Corey E Ventetuolo, Olin Liang, Elizabeth O Harrington
Published in
American journal of physiology. Lung cellular and molecular physiology. Jul 17, 2026. Epub Jul 17, 2026.
Abstract
Acute respiratory distress syndrome (ARDS) remains a critical condition associated with high morbidity and mortality, particularly when triggered by sepsis. Endothelial dysfunction is a central hallmark of ARDS pathology, but the precise mechanisms underlying pulmonary microvascular dysfunction remain poorly understood. Extracellular vesicles (EVs) have emerged as crucial mediators of cell-cell communication during inflammation; however, their role in endothelial dysfunction in ARDS is less clearly defined. We utilized a human pulmonary microvascular endothelial cell (HPMEC)-based model of sepsis-induced acute lung injury to investigate whether inflammatory EVs (iEVs), derived from endothelial cells treated with bacterial lipopolysaccharide (LPS), impair naïve HPMEC function. EVs were characterized by nanoparticle tracking analysis, transmission electron microscopy, and immunofluorescence, confirming purity and uptake. iEV exposure significantly reduced barrier integrity by electric cell-substrate impedance sensing (ECIS) and increased cell migration; effects partially reversed by the TLR4 inhibitor TAK-242. Adhesion and tube formation were unaffected. Pre-treatment of donor HPMECs with the neutral sphingomyelinase inhibitor GW4869 attenuated the barrier-disrupting capacity of the resulting iEVs, implicating ceramide-dependent EV biogenesis in generating pathogenic cargo. Trypan Blue staining confirmed that these effects reflect altered signaling rather than cell death. iEV exposure upregulated TLR4, MyD88, IL-6, ICAM-1, VCAM-1, E-selectin, and Jag1 mRNA, with TAK-242 attenuating IL-6 and ICAM-1 induction. Our results highlight endothelial-derived EVs and TLR4-dependent pathways as amplifiers of pulmonary vascular injury in sepsis-induced ARDS, identifying EV biogenesis and EV-mediated signaling as novel therapeutic targets.
PMID:
42467463
Bibliographic data and abstract were imported from PubMed on 17 Jul 2026.
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