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Published on: November 4, 2015
The Role of Inflammation in Venous Thromboembolism
Brian R Branchford1, Shannon L Carpenter2
1University of Colorado Hemophilia and Thrombosis Center, Pediatric Hematology, University of Colorado School of Medicine and Children's Hospital Colorado, Aurora, CO, United States.
Insights
Inflammation plays a key role in pediatric venous thromboembolism (VTE), including deep vein thrombosis (DVT) and pulmonary embolism (PE). New biomarkers are needed to guide VTE risk assessment and potential anti-inflammatory therapies in children.
Area of Science:
- Pediatric Hematology
- Inflammatory Diseases
- Thrombosis Research
Background:
- Venous thromboembolism (VTE), encompassing deep vein thrombosis (DVT) and pulmonary embolism (PE), is a growing concern in hospitalized children.
- Inflammation is increasingly recognized as both a cause and consequence of VTE, yet current anticoagulation treatments do not target inflammation.
- Many VTE risk factors in children, such as sepsis and inflammatory bowel disease, are linked to inflammatory mediators.
Purpose of the Study:
- To explore the link between inflammation and VTE in pediatric patients.
- To highlight the need for biomarkers to assess VTE risk in inflammatory conditions.
- To investigate the potential role of anti-inflammatory therapies in VTE prevention.
Main Methods:
- Review of existing evidence linking inflammatory processes to thrombosis.
- Discussion of mechanisms by which inflammation may initiate VTE, including endothelial activation and microparticle formation.
- Examination of potential inflammatory biomarkers associated with VTE risk, such as C-reactive protein and cytokines.
Main Results:
- Inflammation can initiate thrombosis on intact veins, distinct from traumatic mechanisms.
- Inflammatory mediators and activated cells (endothelial cells, platelets, leukocytes) can trigger coagulation via tissue factor.
- Elevated inflammatory markers (CRP, IL-6, IL-8, TNF-alpha) are associated with increased VTE risk, especially with central venous catheters.
Conclusions:
- There is a critical need for validated inflammatory scoring systems to guide VTE risk assessment and thromboprophylaxis in pediatric patients.
- Biomarkers of inflammation could help clinicians balance the risks and benefits of prophylactic strategies.
- Targeting inflammation may offer a novel therapeutic approach for preventing VTE in high-risk pediatric populations.
Abstract:
Venous thromboembolism (VTE), comprising deep vein thrombosis (DVT), and pulmonary embolism (PE), is becoming increasingly recognized as a cause of morbidity and mortality in pediatrics, particularly among hospitalized children. Furthermore, evidence is accumulating that suggests the inflammatory response may be a cause, as well as consequence, of VTE, but current anticoagulation treatment regimens are not designed to inhibit inflammation. In fact, many established clinical VTE risk factors such as surgery, obesity, cystic fibrosis, sepsis, systemic infection, cancer, inflammatory bowel disease, and lupus likely modulate thrombosis through inflammatory mediators. Unlike other traumatic mechanisms of thrombosis involving vascular transection and subsequent exposure of subendothelial collagen and other procoagulant extracellular matrix materials, inflammation of the vessel wall may initiate thrombosis on an intact vein. Activation of endothelial cells, platelets, and leukocytes with subsequent formation of microparticles can trigger the coagulation system through the induction of tissue factor (TF). Identification of biomarkers to evaluate VTE risk could be of great use to the clinician caring for a patient with inflammatory disease to guide decisions regarding the risk:benefit ratio of various types of potential thromboprophylaxis strategies, or suggest a role for anti-inflammatory therapy. Unfortunately, no such validated inflammatory scoring system yet exists, though research in this area is ongoing. Elevation of C-reactive protein, IL-6, IL-8, and TNF-alpha during a response to systemic inflammation have been associated with increased VTE risk. Consequent platelet activation enhances the prothrombotic state, leading to VTE development, particularly in patients with other risk factors, most notably central venous catheters.
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