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Published on: May 16, 2013
Depleted circulatory complement-lysis inhibitor (CLI) in childhood cerebral malaria returns to normal with
Samuel Eneọjọ Abah1, Florence Burté1, Steven A Howell1
1Francis Crick Institute, 1 Midland Road, London, NW1 1AT, UK.
Insights
Low levels of complement-lysis inhibitor (CLI) at admission may indicate cerebral malaria (CM) in children. CLI levels rise during recovery, suggesting its potential as a diagnostic marker for this severe childhood illness.
Area of Science:
- Biochemistry
- Immunology
- Pediatrics
Background:
- Cerebral malaria (CM) is a severe, life-threatening childhood illness with high mortality and neurological complications.
- The precise reasons for CM development in some children remain unclear.
- This study observed a pediatric cohort in a malaria-endemic West African region.
Purpose of the Study:
- To identify plasma protein biomarkers that differentiate cerebral malaria (CM) from other malaria and non-malaria conditions in children.
- To investigate the role of identified proteins in CM pathophysiology.
- To assess the diagnostic and prognostic potential of these biomarkers.
Main Methods:
- Plasma samples were collected from children with CM, severe malarial anemia (SMA), uncomplicated malaria (UM), healthy controls (CC), and disease controls (DC).
- Proteomic analysis using 2D-DIGE and mass spectrometry identified differential protein abundance.
- Circulatory levels of identified proteins were quantified by ELISA in a validation cohort.
Main Results:
- Complement-lysis inhibitor (CLI), also known as Clusterin (CLU), showed differential abundance.
- CLI levels were significantly low in children with CM upon hospital admission.
- CLI levels normalized during convalescence and differentiated CM from UM, SMA, DC, and CC groups.
Conclusions:
- Low circulatory CLI levels at acute onset may serve as a specific discriminatory marker for childhood CM.
- CLI levels recover during convalescence, indicating potential for monitoring disease progression.
- CLI may be involved in CM pathophysiology and could aid in diagnosis and follow-up of pediatric CM cases.
Background:
Cerebral malaria (CM), is a life-threatening childhood malaria syndrome with high mortality. CM is associated with impaired consciousness and neurological damage. It is not fully understood, as yet, why some children develop CM. Presented here is an observation from longitudinal studies on CM in a paediatric cohort of children from a large, densely-populated and malaria holoendemic, sub-Saharan, West African metropolis.
Methods:
Plasma samples were collected from a cohort of children with CM, severe malarial anaemia (SMA), uncomplicated malaria (UM), non-malaria positive healthy community controls (CC), and coma and anemic patients without malaria, as disease controls (DC). Proteomic two-dimensional difference gel electrophoresis (2D-DIGE) and mass spectrometry were used in a discovery cohort to identify plasma proteins that might be discriminatory among these clinical groups. The circulatory levels of identified proteins of interest were quantified by ELISA in a prospective validation cohort.
Results:
The proteome analysis revealed differential abundance of circulatory complement-lysis inhibitor (CLI), also known as Clusterin (CLU). CLI circulatory level was low at hospital admission in all children presenting with CM and recovered to normal level during convalescence (p < 0.0001). At acute onset, circulatory level of CLI in the CM group significantly discriminates CM from the UM, SMA, DC and CC groups.
Conclusions:
The CLI circulatory level is low in all patients in the CM group at admission, but recovers through convalescence. The level of CLI at acute onset may be a specific discriminatory marker of CM. This work suggests that CLI may play a role in the pathophysiology of CM and may be useful in the diagnosis and follow-up of children presenting with CM.
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