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Updated: Aug 1, 2026

Endothelialized Microfluidics for Studying Microvascular Interactions in Hematologic Diseases
Published on: June 22, 2012
[Cerebral vasculopathy in children with sickle cell disease: Key issues and the latest data]
Insights
Sickle cell disease in children can cause severe cerebral vasculopathy and stroke. Early screening and interventions like transfusions or stem cell transplants significantly reduce stroke risk and cognitive decline.
Area of Science:
- Neurology
- Hematology
- Pediatrics
Background:
- Cerebral vasculopathy is a severe complication in pediatric sickle cell disease.
- It involves damage to intracranial arteries and microcirculation, leading to stroke and hypoxia.
- Risk factors include clinical, biological, and radiological markers.
Purpose of the Study:
- To review the pathophysiology and management of cerebral vasculopathy in children with sickle cell disease.
- To highlight the importance of early detection and intervention strategies.
- To discuss current and emerging diagnostic and therapeutic approaches.
Main Methods:
- Systematic transcranial Doppler screening for large-vessel vasculopathy.
- MRI-MRA for anatomical analysis of vascular and parenchymal lesions.
- Evaluation of submandibular Doppler sonography and cerebral oxygenation/perfusion methods.
Main Results:
- Transcranial Doppler screening has decreased stroke risk.
- MRI-MRA aids in monitoring and acute event assessment.
- Chronic transfusions and hematopoietic stem cell transplantation are key preventive measures.
- Hydroxycarbamide shows potential as a transfusion alternative under close monitoring.
Conclusions:
- Early detection and intervention are crucial for preventing stroke and cognitive impairment in pediatric sickle cell disease.
- Hematopoietic stem cell transplantation offers a definitive solution.
- Neuropsychological testing is vital for long-term monitoring of cognitive function.
Abstract:
Cerebral vasculopathy is a common and severe complication of sickle cell disease in children. The pathophysiology consists of progressive damage to the basal intracranial arteries and cerebral microcirculation, while chronic anemia worsens exposure to cerebral hypoxia. It results in stroke and subclinical or poorly symptomatic ischemic lesions. Many clinical, biological, and radiological risk factors have been identified. The prevention strategy through systematic transcranial Doppler screening of large-vessel vasculopathy has revolutionized the management of this disease and has greatly decreased the risk of developing stroke. MRI-MRA is a complementary diagnostic tool for anatomical analysis of parenchymal and vascular lesions, which is used for chronic disease monitoring or in the context of an acute neurological event. New exploration opportunities are offered by submandibular Doppler sonography and indirect evaluation methods of cerebral oxygenation and perfusion. If chronic blood transfusion therapy is used to prevent the occurrence and recurrence of cerebral complications of sickle cell disease, only allogeneic hematopoietic stem cell transplantation can safely and definitively stop the transfusion program. It should therefore be proposed early, before irreversible cerebral or vascular lesions occur. Hydroxycarbamide treatment has recently emerged as a potential substitute for chronic transfusions for the maintenance of transcranial Doppler velocities, but only after an initial treatment by transfusions and provided there is close follow-up. In the long run, cerebral vascular damage can cause progressive cognitive impairment and disability, even in children without radiologically identified lesions, indicating the importance of systematic and repeated neuropsychological testing.
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