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CD34+ Hematopoietic Stem Cell Count Is Predictive of Vascular Event Occurrence in Children with Sickle Cell Disease
Manoelle Kossorotoff1,2, Mariane De Montalembert3,4, Valentine Brousse3
1Inserm UMR-S1140, Faculté de Pharmacie, Paris, France. manoelle.kossorotoff@aphp.fr.
Insights
In children with sickle cell disease (SCD), elevated CD34+ cell counts at steady state predict future vascular events. This finding offers a potential biomarker for early intervention in pediatric SCD patients.
Area of Science:
- Pediatric Hematology
- Vascular Biology
- Biomarker Discovery
Background:
- Sickle cell disease (SCD) complications stem from vascular dysfunction affecting microvasculature and cerebral vessels.
- Identifying biomarkers for vascular events in pediatric SCD is crucial for proactive management.
Purpose of the Study:
- To identify circulating biomarkers that predict future vascular events in children with sickle cell disease.
- To evaluate the association between various hematological and vascular parameters and subsequent vascular events.
Main Methods:
- A cohort of 108 children with SCD (aged 3-18 years) at steady state was enrolled.
- Hematology, coagulation, hemolysis, endothelial, and platelet activation markers were measured.
- Vascular events were prospectively recorded over a mean follow-up of 27 months.
Main Results:
- Patients showed higher hemolysis, platelet activation, leukocyte, CD34+ hematopoietic stem cell, and microvesicle counts compared to controls.
- 36 patients experienced at least one neurovascular or systemic vascular event during follow-up.
- Elevated CD34+ cell count was the strongest predictor of vascular events (OR 1.2 per 1000 cells/mL increase).
Conclusions:
- CD34+ cell count at steady state is a promising biomarker for predicting vascular events in pediatric SCD.
- This finding may aid in risk stratification and early intervention strategies for children with SCD.
Background/Objectives:
Sickle cell disease (SCD) complications mostly result from vascular dysfunction, concerning systemic microvasculature and cerebral large vessels. The aim of this cohort study was to identify potential circulating biomarkers predictive for further vascular event occurrence in pediatric SCD.
Methods:
We consecutively enrolled 108 children with SCD at steady state, aged 3-18 years old (median 9.8 years). Hematology, coagulation, hemolysis, endothelial, platelet and vascular activation parameters were recorded at inclusion. Neurovascular and systemic vascular events were prospectively recorded during a mean follow-up period of 27 months.
Results:
Patients at steady state displayed significantly higher hemolysis and platelet activation markers, higher leukocyte, CD34+ hematopoietic stem cell and microvesicle counts, and a pro-coagulant profile compared to controls matched for age and ethnicity. Circulating endothelial cell or nucleosome level did not differ. During the follow-up period, 36 patients had at least one neurovascular (n = 12) or systemic vascular event (n = 25). In a multivariate model, high CD34+ cell count was the best predictor for the occurrence of a vascular event (OR 1.2 for 1000 cell/mL increase, 95% CI [1.049-1.4], p = 0.013, sensitivity 53%, specificity 84% for a threshold of 8675 cells/mL).
Conclusion:
CD34+ cell count at steady state is a promising biomarker of further vascular event in children with SCD.
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