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High plasma levels of soluble intercellular adhesion molecule (ICAM)-1 are associated with cerebral malaria
Selorme Adukpo1, Kwadwo A Kusi2, Michael F Ofori2
1Immunology Department, Noguchi Memorial Institute for Medical Research, College of Health Sciences, University of Ghana, Legon, Accra, Ghana ; Department of Animal Biology and Conservation Science, University of Ghana, Legon, Accra, Ghana.
Background:
Cerebral malaria (CM) is responsible for most of the malaria-related deaths in children in sub-Saharan Africa. Although, not well understood, the pathogenesis of CM involves parasite and host factors which contribute to parasite sequestration through cytoadherence to the vascular endothelium. Cytoadherence to brain microvasculature is believed to involve host endothelial receptor, CD54 or intercellular adhesion molecule (ICAM)-1, while other receptors such as CD36 are generally involved in cytoadherence of parasites in other organs. We therefore investigated the contributions of host ICAM-1 expression and levels of antibodies against ICAM-1 binding variant surface antigen (VSA) on parasites to the development of CM.
Methodology/Principal Findings:
Paediatric malaria patients, 0.5 to 13 years were recruited and grouped into CM and uncomplicated malaria (UM) patients, based on well defined criteria. Standardized ELISA protocol was used to measure soluble ICAM-1 (sICAM-1) levels from acute plasma samples. Levels of IgG to CD36- or ICAM-1-binding VSA were measured by flow cytometry during acute and convalescent states. Wilcoxon sign rank-test analysis to compare groups revealed association between sICAM-1 levels and CM (p<0.0037). Median levels of antibodies to CD36-binding VSA were comparable in the two groups at the time of admission and 7 days after treatment was initiated (p>0.05). Median levels of antibodies to CD36-binding VSAs were also comparable between acute and convalescent samples within any patient group. Median levels of antibodies to ICAM-1-binding VSAs were however significantly lower at admission time than during recovery in both groups.
Conclusions/Significance:
High levels of sICAM-1 were associated with CM, and the sICAM-1 levels may reflect expression levels of the membrane bound form. Anti-VSA antibody levels to ICAM-binding parasites was more strongly associated with both UM and CM than antibodies to CD36 binding parasites. Thus, increasing host sICAM-1 levels were associated with CM whilst antibodies to parasite expressing non-ICAM-1-binding VSAs were not.
Insights
High soluble intercellular adhesion molecule-1 (sICAM-1) levels are linked to cerebral malaria (CM) in children. Antibodies against ICAM-1 binding parasites, not CD36 binding parasites, correlate with malaria severity.
Area of Science:
- Immunology
- Infectious Diseases
- Pediatrics
Background:
- Cerebral malaria (CM) is a leading cause of malaria-related deaths in children, particularly in sub-Saharan Africa.
- CM pathogenesis involves parasite and host factors, including parasite sequestration via cytoadherence to vascular endothelium.
- Intercellular adhesion molecule-1 (ICAM-1) and CD36 are key endothelial receptors implicated in parasite binding.
Purpose of the Study:
- To investigate the association between host ICAM-1 expression and antibodies against ICAM-1 binding variant surface antigens (VSAs) and the development of CM.
- To differentiate the roles of ICAM-1 and CD36 in parasite cytoadherence in pediatric malaria.
Main Methods:
- Recruitment of pediatric malaria patients (0.5-13 years) into CM and uncomplicated malaria (UM) groups.
- Measurement of soluble ICAM-1 (sICAM-1) levels using ELISA in acute plasma samples.
- Quantification of IgG antibodies to CD36- or ICAM-1-binding VSAs via flow cytometry during acute and convalescent phases.
Main Results:
- Significantly higher sICAM-1 levels were observed in CM patients compared to UM patients (p<0.0037).
- Antibody levels to CD36-binding VSAs were comparable between CM and UM groups and did not change significantly between acute and convalescent states.
- Antibodies to ICAM-1-binding VSAs were significantly lower at admission than during recovery in both CM and UM groups.
Conclusions:
- Elevated sICAM-1 levels are associated with CM, potentially reflecting increased membrane-bound ICAM-1 expression.
- Antibodies targeting ICAM-1 binding parasites showed a stronger association with both UM and CM than antibodies against CD36-binding parasites.
- Host sICAM-1 levels are implicated in CM development, while antibodies to non-ICAM-1 binding parasites do not appear protective against CM.
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