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Platelet Glycoprotein VI Haplotypes and the Presentation of Paediatric Sepsis
Ahmed Asfari1,2, Judith A Dent3, Adam Corken3
1Section of Cardiac Critical Care Medicine, Department of Pediatric Cardiology, University of Alabama at Birmingham College of Medicine, Birmingham, Alabama, United States.
Insights
Platelet glycoprotein VI (GPVI) haplotypes influence platelet microparticle (pMP) release. The GPVIa haplotype is linked to higher pMP levels and predicts more severe sepsis outcomes in critically ill children.
Area of Science:
- Immunology
- Hematology
- Critical Care Medicine
Background:
- Sepsis involves complex inflammatory and coagulation issues.
- Platelets contribute to coagulation and increasingly recognized inflammatory roles.
- Platelet glycoprotein VI (GPVI) mediates platelet microparticle (pMP) release.
Purpose of the Study:
- To investigate the impact of common GPVI haplotypes (GPVIa and GPVIb) on pMP levels.
- To determine if GPVI haplotypes predict sepsis severity in pediatric ICU patients.
Main Methods:
- Assessed GPVI haplotypes and pMP levels in healthy individuals (n=49).
- Determined GPVI haplotypes in pediatric ICU patients with sepsis (n=73).
- Correlated GPVI haplotypes with sepsis severity using PELOD-2 and PIM III scores.
Main Results:
- The GPVIa haplotype showed a twofold increase in circulating pMPs and heightened in vitro release in healthy individuals.
- Septic patients with the GPVIa haplotype (n=59) were more likely to have severe sepsis or septic shock compared to GPVIb individuals (n=14).
- GPVIa haplotype was associated with increased organ failure in septic patients.
Conclusions:
- GPVI haplotypes significantly influence circulating pMP levels.
- GPVI haplotypes serve as predictive biomarkers for sepsis severity and organ failure in pediatric ICU settings.
Abstract:
Sepsis triggers a complex series of pathophysiologic events involving inflammatory responses and coagulation abnormalities. While circulating blood platelets are well-characterized for their contributions to coagulation, increasingly platelet-dependent effects on inflammation are being recognized. Here, we focus on the platelet membrane receptor, glycoprotein VI (GPVI), and its role in platelet microparticle (pMP) release. The GPVI receptor is a platelet-specific collagen membrane receptor that, upon ligand binding, facilitates the release of pMPs. As membrane-bound platelet fragments of less than 1 μm, pMPs are known to have both pro-inflammatory and pro-coagulant properties. Thus, pMPs are potentially impacting sepsis at multiple stages of the inflammatory response. Studies are presented documenting the impact of the most common GPVI haplotypes, GPVIa and GPVIb, on pMP levels and release in healthy individuals (n = 49). The GPVIa haplotype corresponds to an approximately twofold increase in circulating pMPs as a percentage of total microparticles in healthy individuals along with a heightened in vitro release of pMPs. Additionally, patients admitted to a paediatric intensive care unit (ICU) (n = 73) with an initial diagnosis of sepsis were recruited and their GPVI haplotypes determined. Septic patients of the GPVIa haplotype (n = 59) were statistically more likely to present with a diagnosis of severe sepsis or septic shock, as compared with GPVIb individuals (n = 14). Independent disease classification via PELOD-2 and Pediatric Risk of Mortality III scores confirmed individuals with the GPVIa haplotype were more likely to have significant organ failure. Thus, GPVI haplotypes influence pMP levels in the circulation and are predictive of sepsis severity when presenting to the ICU.
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