Related Experiment Videos
Cellular origin and procoagulant properties of microparticles in meningococcal sepsis
R Nieuwland1, R J Berckmans, S McGregor
1Department of Clinical Chemistry, Leiden University Medical Center, Leiden, The Netherlands. rnieuwland@ckcl.azl.nl
Abstract:
Patients with meningococcal sepsis generally suffer from disseminated intravascular coagulation (DIC). The aim of this study was to address whether these patients have elevated numbers of circulating microparticles that contribute to the development of DIC. Plasma samples from 5 survivors, 2 nonsurvivors, and 5 healthy volunteers were analyzed for the presence of microparticles by flow cytometry. Ongoing coagulation activation in vivo was quantified by enzyme-linked immunosorbent assay of plasma prothrombin fragment F(1 + 2), and procoagulant properties of microparticles in vitro were estimated by thrombin-generation assay. On admission, all patients had increased numbers of microparticles originating from platelets or granulocytes when compared with controls (P =.004 and P =.008, respectively). Patients had elevated levels of F(1 + 2) (P =.004), and their microparticles supported thrombin generation more strongly in vitro (P =.003) than those of controls. Plasma from the patient with the most fulminant disease course and severe DIC contained microparticles that expressed both CD14 and tissue factor, and these microparticles demonstrated extreme thrombin generation in vitro. We conclude that patients with meningococcal sepsis have elevated numbers of circulating microparticles that are procoagulant. These findings may suggest a novel therapeutic approach to combat clinical conditions with excessive coagulation activation.
Insights
Patients with meningococcal sepsis have more procoagulant microparticles, contributing to disseminated intravascular coagulation (DIC). These findings suggest microparticles as a therapeutic target for excessive coagulation activation.
Area of Science:
- Hematology
- Microbiology
- Pathophysiology
Background:
- Meningococcal sepsis frequently leads to disseminated intravascular coagulation (DIC).
- The role of circulating microparticles in DIC development during sepsis is not fully understood.
Purpose of the Study:
- To investigate whether patients with meningococcal sepsis exhibit elevated levels of circulating microparticles.
- To determine if these microparticles contribute to the development of DIC.
Main Methods:
- Plasma samples from sepsis patients and healthy volunteers were analyzed using flow cytometry.
- Coagulation activation was quantified via plasma prothrombin fragment F(1+2) levels.
- Microparticle procoagulant activity was assessed using thrombin-generation assays.
Main Results:
- Patients with meningococcal sepsis showed increased platelet and granulocyte-derived microparticles compared to controls.
- Elevated levels of prothrombin fragment F(1+2) indicated ongoing in vivo coagulation activation.
- Microparticles from patients demonstrated enhanced procoagulant properties and supported greater thrombin generation in vitro.
Conclusions:
- Patients with meningococcal sepsis have elevated numbers of procoagulant circulating microparticles.
- These microparticles may play a significant role in the pathogenesis of DIC.
- Targeting these microparticles could offer a novel therapeutic strategy for excessive coagulation activation.