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Lymphocyte Perturbations in Malawian Children with Severe and Uncomplicated Malaria
Wilson L Mandala1, Chisomo L Msefula2, Esther N Gondwe3
1Malawi-Liverpool-Wellcome Trust Clinical Research Programme, College of Medicine, Blantyre, Malawi Department of Basic Medical Sciences, College of Medicine, University of Malawi, Blantyre, Malawi Liverpool School of Tropical Medicine, University of Liverpool, Liverpool, United Kingdom.
Insights
Severe malaria in children presents distinct lymphocyte profiles. Cerebral malaria shows lymphocyte activation and memory cells, while severe malarial anemia has reduced memory cells, independent of age.
Area of Science:
- Immunology
- Infectious Diseases
- Pediatrics
Background:
- Lymphocytes play a crucial role in malaria immunity and severe disease pathogenesis.
- Assessing lymphocyte contributions to malaria is complex due to age-related variations in subsets.
Purpose of the Study:
- To investigate lymphocyte subset counts, activation, and memory status in Malawian children with different malaria presentations.
- To determine if lymphocyte profiles differ between cerebral malaria, severe malarial anemia, and uncomplicated malaria, and if these are age-dependent.
Main Methods:
- Immunophenotyping of peripheral blood from children with cerebral malaria, severe malarial anemia, uncomplicated malaria, and healthy controls.
- Analysis of lymphocyte subset counts, activation markers (CD69), and memory status (CD4+ memory/naive ratio).
Main Results:
- Panlymphopenia observed in cerebral malaria and uncomplicated malaria, absent in severe malarial anemia.
- Higher percentages of activated natural killer (NK) and gamma-delta T (γδ T) cells in cerebral malaria.
- Increased CD4+ memory to naive lymphocyte ratios in cerebral malaria compared to other forms; low ratios in severe malarial anemia.
Conclusions:
- Distinct lymphocyte subset profiles characterize different forms of severe malaria in children, independent of age.
- Cerebral malaria is associated with lymphocyte activation and immune priming, while severe malarial anemia shows reduced memory cells and less activation.
- These immunological profiles may indicate a predisposition to specific severe malaria outcomes, warranting further investigation.
Abstract:
Lymphocytes are implicated in immunity and pathogenesis of severe malaria. Since lymphocyte subsets vary with age, assessment of their contribution to different etiologies can be difficult. We immunophenotyped peripheral blood from Malawian children presenting with cerebral malaria, severe malarial anemia, and uncomplicated malaria (n = 113) and healthy aparasitemic children (n = 42) in Blantyre, Malawi, and investigated lymphocyte subset counts, activation, and memory status. Children with cerebral malaria were older than those with severe malarial anemia. We found panlymphopenia in children presenting with cerebral malaria (median lymphocyte count, 2,100/μl) and uncomplicated malaria (3,700/μl), which was corrected in convalescence and was absent in severe malarial anemia (5,950/μl). Median percentages of activated CD69(+) NK (73%) and γδ T (60%) cells were higher in cerebral malaria than in other malaria types. Median ratios of memory to naive CD4(+) lymphocytes were higher in cerebral malaria than in uncomplicated malaria and low in severe malarial anemia. The polarized lymphocyte subset profiles of different forms of severe malaria are independent of age. In conclusion, among Malawian children cerebral malaria is characterized by lymphocyte activation and increased memory cells, consistent with immune priming. In contrast, there are reduced memory cells and less activation in severe malaria anemia. Further studies are required to understand whether these immunological profiles indicate predisposition of some children to one or another form of severe malaria.
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