ArticleMarine drugs2024
Isaridin E Protects against Sepsis by Inhibiting Von Willebrand Factor-Induced Endothelial Hyperpermeability and Platelet-Endothelium Interaction.
Article in Marine drugs, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Mouse models to study von Willebrand factor in inflammation: a scoping review.Intensive care medicine experimental · 2026Review
- Isaridin E Protects Against UVB-Induced Photoaging by Activating Wnt/β-Catenin Signaling Pathway and Alleviating Mitochondrial Dysfunction.Marine drugs · 2026Article
- Marine natural products.Natural product reports · 2026Review
- The Endothelial Cell Perspective in Pulmonary Fibrosis: From Cell Fate Decisions, Intercellular Communication, and EndoMT to Emerging Therapies.Canadian respiratory journal · 2026Review
- Endothelial cell injury: a crucial link in microcirculatory dysfunction associated with sepsis.World journal of emergency medicine · 2026Review
- Serum proteomic profiling of sepsis patients reveals a protein-based diagnostic model, with metabolomic insights into carbapenem-resistantFrontiers in immunology · 2026Article
- Immunothrombosis in Sepsis: Cellular Crosstalk, Molecular Triggers, and Therapeutic Opportunities-A Review.International journal of molecular sciences · 2025Review
- The Marine Compound Isaridin E Ameliorates Lipopolysaccharide-Induced Vascular Endothelial Inflammation via the Downregulation of the TLR4/NF-κB Signaling Pathway.Marine drugs · 2025Article
- Signaling pathways of marine-derived natural products on lung injury: from theFrontiers in pharmacology · 2025Review
- The Crucial Roles of Platelets as Immune Mediators in Sepsis.Journal of inflammation research · 2025Review
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Authors and funding
17 authors.
Funding
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Abstract
Endothelial hyperpermeability is pivotal in sepsis-associated multi-organ dysfunction. Increased von Willebrand factor (vWF) plasma levels, stemming from activated platelets and endothelium injury during sepsis, can bind to integrin αvβ3, exacerbating endothelial permeability. Hence, targeting this pathway presents a potential therapeutic avenue for sepsis. Recently, we identified isaridin E (ISE), a marine-derived fungal cyclohexadepsipeptide, as a promising antiplatelet and antithrombotic agent with a low bleeding risk. ISE's influence on septic mortality and sepsis-induced lung injury in a mouse model of sepsis, induced by caecal ligation and puncture, is investigated in this study. ISE dose-dependently improved survival rates, mitigating lung injury, thrombocytopenia, pulmonary endothelial permeability, and vascular inflammation in the mouse model. ISE markedly curtailed vWF release from activated platelets in septic mice by suppressing vesicle-associated membrane protein 8 and soluble N-ethylmaleide-sensitive factor attachment protein 23 overexpression. Moreover, ISE inhibited healthy human platelet adhesion to cultured lipopolysaccharide (LPS)-stimulated human umbilical vein endothelial cells (HUVECs), thereby significantly decreasing vWF secretion and endothelial hyperpermeability. Using cilengitide, a selective integrin αvβ3 inhibitor, it was found that ISE can improve endothelial hyperpermeability by inhibiting vWF binding to αvβ3. Activation of the integrin αvβ3-FAK/Src pathway likely underlies vWF-induced endothelial dysfunction in sepsis. In conclusion, ISE protects against sepsis by inhibiting endothelial hyperpermeability and platelet-endothelium interactions.
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