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Published on: April 5, 2015
Assessment of volume depletion in children with malaria
Timothy Planche1, Myriam Onanga, Achim Schwenk
1Department of Cellular and Molecular Medicine, Infectious Diseases, St. George's Hospital Medical School, London, United Kingdom.
Insights
Severe malaria in children causes mild dehydration, but this does not worsen complications. Fluid replacement for malaria should occur over 12-24 hours to avoid risks.
Area of Science:
- Pediatrics
- Infectious Diseases
- Physiology
Background:
- Fluid volume depletion in severe malaria is not well understood.
- Knowledge of fluid compartment volumes is crucial for guiding malaria treatment in children.
- This study investigated fluid compartment volumes in Gabonese children with malaria to assess disease severity correlations.
Purpose of the Study:
- To measure body compartment volumes in Gabonese children with malaria.
- To test the hypothesis that fluid volume changes reflect malaria disease severity.
- To inform fluid therapy management for severely ill children.
Main Methods:
- Tracer dilution using heavy water and bromide to estimate total body water (TBW) and extracellular water (ECW) volumes.
- Intracellular water (ICW) volume derived from TBW and ECW.
- Bioelectrical impedance analysis (BIA) calibrated against dilution methods, with daily measurements until discharge.
Main Results:
- Severe malaria was associated with a mild depletion of TBW (6.7%) compared to discharge levels.
- Extracellular water (ECW) volumes were normal on admission and did not increase early in severe malaria.
- Fluid compartment volumes did not correlate with hyperlactataemia or other severity markers; moderate malaria showed no TBW depletion.
Conclusions:
- Significant hypovolemia does not appear to exacerbate malaria complications.
- Rapid rehydration in children with malaria may pose risks.
- Fluid replacement regimens should aim for gradual correction of fluid losses over 12-24 hours.
Background:
The degree of volume depletion in severe malaria is currently unknown, although knowledge of fluid compartment volumes can guide therapy. To assist management of severely ill children, and to test the hypothesis that volume changes in fluid compartments reflect disease severity, we measured body compartment volumes in Gabonese children with malaria.
Methods And Findings:
Total body water volume (TBW) and extracellular water volume (ECW) were estimated in children with severe or moderate malaria and in convalescence by tracer dilution with heavy water and bromide, respectively. Intracellular water volume (ICW) was derived from these parameters. Bioelectrical impedance analysis estimates of TBW and ECW were calibrated against dilution methods, and bioelectrical impedance analysis measurements were taken daily until discharge. Sixteen children had severe and 19 moderate malaria. Severe childhood malaria was associated with depletion of TBW (mean [SD] of 37 [33] ml/kg, or 6.7% [6.0%]) relative to measurement at discharge. This is defined as mild dehydration in other conditions. ECW measurements were normal on admission in children with severe malaria and did not rise in the first few days of admission. Volumes in different compartments (TBW, ECW, and ICW) were not related to hyperlactataemia or other clinical and laboratory markers of disease severity. Moderate malaria was not associated with a depletion of TBW.
Conclusions:
Significant hypovolaemia does not exacerbate complications of severe or moderate malaria. As rapid rehydration of children with malaria may have risks, we suggest that fluid replacement regimens should aim to correct fluid losses over 12-24 h.
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