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Isolation and Characterization of Neutrophil-derived Microparticles for Functional Studies
Published on: March 2, 2018
Role of microparticles in sepsis
1Anaesthesia and Intensive Care, Institute of Medical Sciences, Foresterhill, Aberdeen AB25 2ZD, UK.
Abstract:
This review discusses the role of microparticles in inflammation, coagulation, vascular function, and most importantly, their physiological and pathological functions in sepsis. Microparticles are proinflammatory, procoagulant membrane vesicles released from various cell types. They are detectable in normal individuals and basal levels correlate with a balance between cell proliferation, stimulation, and destruction. Haemostatic imbalance leads to various pathological states of inflammation and thrombosis including cardiovascular disease and sepsis, where circulating microparticles display both an increase in number and phenotypic change. Microparticles, mainly of platelet origin enable both local and disseminated amplification of the haemostatic response to endothelial injury through exposure of phosphatidylserine, tissue factor, and coagulation factor binding sites. Surface expression of membrane antigens by microparticles facilitates cytoadhesion, chemotaxis, and cytokine secretion to drive a proinflammatory response. Microparticles behave as vectors in the transcellular exchange of biological information and are important regulators of endothelial function and angiogenesis. The extent to which circulating microparticles contribute to the pathogenesis of sepsis and disseminated intravascular coagulation is currently unknown. Microparticles may in fact be beneficial in early sepsis, given that activated protein C bound to endothelium-derived microparticles retains anticoagulant activity, and increased circulating microparticles are protective against vascular hyporeactivity. Elevated levels of microparticles in early sepsis may therefore compensate for the host's systemic inflammatory response. Importantly, in vivo, septic microparticles induce deleterious changes in the expression of enzyme systems related to inflammation and oxidative stress, thus they may represent important contributors to multi-organ failure in septic shock.
Insights
Microparticles, small cell-derived vesicles, play complex roles in inflammation and coagulation. In sepsis, they can be both beneficial and detrimental, influencing organ failure.
Area of Science:
- Biochemistry
- Immunology
- Cell Biology
Background:
- Microparticles are membrane vesicles released from cells, involved in inflammation and coagulation.
- Elevated microparticle levels are observed in pathological states like sepsis.
- Their precise role in sepsis pathogenesis is not fully understood.
Purpose of the Study:
- To review the physiological and pathological functions of microparticles in sepsis.
- To elucidate the dual role of microparticles in the inflammatory and thrombotic processes of sepsis.
- To explore the contribution of microparticles to multi-organ failure in septic shock.
Main Methods:
- Review of existing literature on microparticles and sepsis.
- Analysis of microparticle involvement in inflammation, coagulation, and vascular function.
- Discussion of their impact on endothelial function and angiogenesis.
Main Results:
- Microparticles are proinflammatory and procoagulant, amplifying haemostatic responses.
- They act as vectors for intercellular communication, regulating endothelial function.
- In early sepsis, microparticles may have protective anticoagulant and anti-inflammatory effects.
- Septic microparticles can induce detrimental changes, contributing to multi-organ failure.
Conclusions:
- Microparticles have complex, context-dependent roles in sepsis.
- Their dual nature as potentially beneficial or harmful mediators requires further investigation.
- Understanding microparticle function is crucial for managing sepsis and septic shock.
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