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Extracellular histones trigger oxidative stress-dependent induction of the NF-kB/CAM pathway via TLR4 in endothelial cells
Pérez-Cremades, Daniel; Bueno-Betí, Carlos; García-Giménez, José Luis; Ibañez-Cabellos, José Santiago; Pallardó, Federico V; Hermenegildo, Carlos; Novella, Susana.
Affiliation
  • Pérez-Cremades, Daniel; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
  • Bueno-Betí, Carlos; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
  • García-Giménez, José Luis; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
  • Ibañez-Cabellos, José Santiago; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
  • Pallardó, Federico V; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
  • Hermenegildo, Carlos; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
  • Novella, Susana; University of Valencia. Faculty of Medicine and Dentistry. Department of Physiology. Valencia. Spain
J. physiol. biochem ; 79(2)may. 2023. graf, ilus
Article in English | IBECS | ID: ibc-222539
Responsible library: ES1.1
Localization: ES15.1 - BNCS
ABSTRACT
Extracellular histones have been reported to aggravate different pathophysiological processes by increasing vascular permeability, coagulopathy, and inflammation. In the present study, we elucidate how extracellular histones (10–100 µg/mL) concentration dependently increase cytosolic reactive oxygen species (ROS) production using human umbilical vein endothelial cells (HUVECs). Furthermore, we identify cyclooxygenase (COX) and NADPH oxidase (NOX) activity as sources of ROS production in extracellular histone-treated HUVEC. This COX/NOX-mediated ROS production is also involved in enhanced NF-kB activity and cell adhesion molecules (VCAM1 and ICAM1) expression in histone-treated HUVEC. Finally, by using different toll-like receptor (TLR) antagonists, we demonstrate the role of TLR4 in CAMs overexpression triggered by extracellular histones in endothelial cells. In conclusion, our data suggest that through TLR4 signaling, extracellular histones increase endothelial cell activation, a mechanism involving increased COX- and NOX-mediated ROS. These findings increase our understanding on how extracellular histones enhance systemic inflammatory responses in diseases in which histone release occurs as part of the pathological processes. (AU)
Subject(s)


Full text: Available Collection: National databases / Spain Database: IBECS Main subject: Histones / NF-kappa B Limits: Humans Language: English Journal: J. physiol. biochem Year: 2023 Document type: Article Institution/Affiliation country: University of Valencia/Spain

Full text: Available Collection: National databases / Spain Database: IBECS Main subject: Histones / NF-kappa B Limits: Humans Language: English Journal: J. physiol. biochem Year: 2023 Document type: Article Institution/Affiliation country: University of Valencia/Spain
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