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Updated: Jan 13, 2026

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In Vivo Assessment of Rodent Plasmodium Parasitemia and Merozoite Invasion by Flow Cytometry
Published on: April 5, 2015
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A novel flow cytometry approach to quantify malaria-derived particles
Attakorn Palasuwan1, Kritsamon Sophondilok2, Sumate Ampawong3
1Oxidation in Red Cell Disorders Research Unit, Department of Clinical Microscopy, Faculty of Allied Health Sciences, Chulalongkorn University, Bangkok, Thailand.
Cytometry. Part B, Clinical Cytometry
|January 7, 2026
Summary
Flow cytometry can now quantify malaria-derived particles (MDPs) in blood, aiding diagnosis. This method correlates MDP levels with parasite density, offering a reliable tool for malaria management in endemic regions.
Area of Science:
- Parasitology
- Flow Cytometry
- Diagnostic Development
Background:
- Accurate quantification of malaria parasite density is vital for effective diagnosis and treatment.
- Malaria-derived particles (MDPs) are implicated in malaria pathology, but a standardized quantification method is lacking.
- Existing methods for parasite quantification may not be suitable for routine laboratory use.
Purpose of the Study:
- To optimize a flow cytometry method for enumerating malaria-derived particles (MDPs) per microliter of blood.
- To establish a reliable and straightforward quantification technique for routine laboratory settings.
- To assess the correlation between MDP levels and parasite density in malaria infections.
Main Methods:
- Optimization of a flow cytometry protocol involving propidium iodide staining and red blood cell (RBC) lysis.
- Quantification of MDPs using a CytoFlex flow cytometer with size-standard and counting beads.
- Ultrastructural analysis of malarial parasites in lysed RBCs via electron microscopy.
Main Results:
- A significant increase in MDP levels was observed in blood samples from Plasmodium falciparum and Plasmodium vivax infections compared to controls.
- MDP concentration strongly correlated with infected red blood cell (iRBC) percentage (R² = 0.94) and parasite density (R² = 0.94 for P. falciparum, R² = 0.91 for P. vivax).
- Electron microscopy confirmed malarial parasites exist as membrane-bound spherical cells within lysed RBCs.
Conclusions:
- Flow cytometry provides a reliable and straightforward method for quantifying MDPs, offering a new tool for malaria diagnosis.
- The developed method demonstrates a strong association between MDP concentration and parasite density.
- This approach has the potential for routine laboratory use in managing malaria parasite infections.

