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The endothelial glycocalyx in critical illness: A pediatric perspective
Robert P Richter1,2,3, Gregory A Payne2,4, Namasivayam Ambalavanan1,5,6
1Department of Pediatrics, University of Alabama at Birmingham, Birmingham, AL, USA.
Insights
The endothelial glycocalyx protects organs, but its damage causes vascular dysfunction. More research is needed on glycocalyx injury in pediatric critical illness to understand its unique effects and develop treatments.
Area of Science:
- Vascular Biology
- Pediatric Critical Care
- Biomedical Science
Background:
- The vascular endothelium, lined by the endothelial glycocalyx, is crucial for organ function.
- Endothelial glycocalyx regulates leukocyte-endothelium interactions, vascular permeability, and coagulation.
- Degradation of this glycocalyx leads to vascular dysfunction, inflammation, and organ injury.
Purpose of the Study:
- To review the role of the endothelial glycocalyx in pediatric critical illness.
- To highlight knowledge gaps in pediatric vascular biology concerning glycocalyx integrity.
- To bridge understanding between adult/preclinical data and pediatric clinical findings.
Main Methods:
- Narrative literature overview.
- Synthesis of adult and preclinical data on endothelial glycocalyx.
- Integration with pediatric clinical experience.
Main Results:
- Endothelial glycocalyx plays a significant role in vascular pathophysiology.
- Damage to the glycocalyx contributes to aberrant vascular biology in children.
- Existing research on pediatric glycocalyx injury is limited compared to adults.
Conclusions:
- Understanding endothelial glycocalyx integrity is vital in pediatric critical illness.
- Further research is needed to address knowledge gaps in pediatric vascular biology.
- Findings may inform novel therapeutic strategies for pediatric vascular dysfunction.
Abstract:
The vascular endothelium is the interface between circulating blood and end organs and thus has a critical role in preserving organ function. The endothelium is lined by a glycan-rich glycocalyx that uniquely contributes to endothelial function through its regulation of leukocyte and platelet interactions with the vessel wall, vascular permeability, coagulation, and vasoreactivity. Degradation of the endothelial glycocalyx can thus promote vascular dysfunction, inflammation propagation, and organ injury. The endothelial glycocalyx and its role in vascular pathophysiology has gained increasing attention over the last decade. While studies characterizing vascular glycocalyx injury and its downstream consequences in a host of adult human diseases and in animal models has burgeoned, studies evaluating glycocalyx damage in pediatric diseases are relatively few. As children have unique physiology that differs from adults, significant knowledge gaps remain in our understanding of the causes and effects of endothelial glycocalyx disintegrity in pediatric critical illness. In this narrative literature overview, we offer a unique perspective on the role of the endothelial glycocalyx in pediatric critical illness, drawing from adult and preclinical data in addition to pediatric clinical experience to elucidate how marked derangement of the endothelial surface layer may contribute to aberrant vascular biology in children. By calling attention to this nascent field, we hope to increase research efforts to address important knowledge gaps in pediatric vascular biology that may inform the development of novel therapeutic strategies.
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