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Updated: Jan 23, 2026

Characterizing Salmonella Typhimurium-induced Septic Peritonitis in Mice
Published on: July 29, 2022
Sepsis and septic shock: endothelial molecular pathogenesis associated with vascular microthrombotic disease
1Department of Medicine, University of California Irvine School of Medicine, Irvine, CA USA.
Abstract:
In addition to protective "immune response", sepsis is characterized by destructive "endothelial response" of the host, leading to endotheliopathy and its molecular dysfunction. Complement activation generates membrane attack complex (MAC). MAC causes channel formation to the cell membrane of pathogen, leading to death of microorganisms. In the host, MAC also may induce channel formation to innocent bystander endothelial cells (ECs) and ECs cannot be protected. This provokes endotheliopathy, which activates two independent molecular pathways: inflammatory and microthrombotic. Activated inflammatory pathway promotes the release of inflammatory cytokines and triggers inflammation. Activated microthrombotic pathway mediates platelet activation and exocytosis of unusually large von Willebrand factor multimers (ULVWF) from ECs and initiates microthrombogenesis. Excessively released ULVWF become anchored to ECs as long elongated strings and recruit activated platelets to assemble platelet-ULVWF complexes and form "microthrombi". These microthrombi strings trigger disseminated intravascular microthrombosis (DIT), which is the underlying pathology of endotheliopathy-associated vascular microthrombotic disease (EA-VMTD). Sepsis-induced endotheliopathy promotes inflammation and DIT. Inflammation produces inflammatory response and DIT orchestrates consumptive thrombocytopenia, microangiopathic hemolytic anemia, and multiorgan dysfunction syndrome (MODS). Systemic inflammatory response syndrome (SIRS) is a combined phenotype of inflammation and endotheliopathy-associated (EA)-VMTD. Successful therapeutic design for sepsis can be achieved by counteracting the pathologic microthrombogenesis.
Insights
Sepsis causes endothelial dysfunction and microthrombosis via membrane attack complex (MAC) activation. Targeting this microthrombogenesis offers a therapeutic strategy for sepsis-induced endotheliopathy and multiorgan dysfunction.
Area of Science:
- Pathology
- Immunology
- Vascular Biology
Background:
- Sepsis involves immune and destructive endothelial responses, leading to endotheliopathy.
- Membrane attack complex (MAC) formation, crucial for pathogen destruction, can also damage host endothelial cells (ECs).
- Endotheliopathy activates inflammatory and microthrombotic pathways, contributing to sepsis pathology.
Purpose of the Study:
- To elucidate the molecular mechanisms of sepsis-induced endotheliopathy.
- To investigate the role of MAC in endothelial cell damage during sepsis.
- To identify therapeutic targets for sepsis by understanding microthrombogenesis.
Main Methods:
- Analysis of complement activation and MAC formation in sepsis.
- Investigation of endothelial cell response to MAC.
- Characterization of inflammatory and microthrombotic pathways in sepsis-induced endotheliopathy.
Main Results:
- MAC formation contributes to EC dysfunction and endotheliopathy.
- Endotheliopathy activates inflammatory responses and microthrombotic pathways.
- Microthrombi formation, driven by ULVWF and platelets, leads to disseminated intravascular microthrombosis (DIT) and endotheliopathy-associated vascular microthrombotic disease (EA-VMTD).
Conclusions:
- Sepsis-induced endotheliopathy promotes inflammation and DIT, underlying conditions like SIRS and MODS.
- Therapeutic strategies targeting microthrombogenesis are crucial for managing sepsis.
- Counteracting pathological microthrombogenesis presents a promising approach for sepsis treatment.
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