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Ethanolic Leaf Extract of Annona muricata Pauses Plasmodium knowlesi Schizogony and Reduces Binding of Infected Red Blood Cells to Endothelial Cells.

Created on 27 Jul 2026

Authors

Yi-Jun Lim, Gordon Xue-Zhen Chong, Joo-Yie Chin, Muhammed-Nur-Iman Mohammed-Syafiei, Muhammad-Nasreen Suhaimi, Siti-Nursyazziana Nordin, Shin-Yee Fung, Hazel Anne Tabo, Polrat Wilairatana, Tadesse Hailu, Veeranoot Nissapatorn, Wenn-Chyau Lee

Published in

Tropical medicine and infectious disease. Volume 11. Issue 7. Jul 06, 2026. Epub Jul 06, 2026.

Abstract

Plasmodium knowlesi infections can progress rapidly to life-threatening complications, such as acute respiratory distress syndrome (ARDS) and acute kidney injury (AKI), which are driven by the ability of the zoonotic parasite to rapidly replicate towards high parasitemia and the cytoadherence properties of the infected erythrocytes (IRBCs). This study evaluated the anti-parasitic and vasoprotective potential of Annona muricata (soursop) leaf ethanol extract against P. knowlesi. In vitro assays using the P. knowlesi A1-H.1 reference strain revealed significant blood stage schizogony inhibition (IC50: 9.65 µg/mL), specifically targeting the trophozoites. The anti-parasitic activity was concentrated in the <30 kDa subfraction of the extract. Washout assays confirmed that the effect was parasitostatic rather than parasiticidal, where the malaria parasites underwent developmental arrest but remained morphologically normal and resumed growth post-removal. Furthermore, priming human endothelial cell lines with the extract significantly reduced IRBC-endothelial binding. These results demonstrate that A. muricata extract exerts a dual-action effect by arresting P. knowlesi asexual replication and inhibiting IRBC-endothelial cytoadherence. While clinical translation would require exhaustive standardization and chemotypic profiling due to the natural variability of plant compositions, these findings provide a foundational academic framework for the potential of A. muricata leaf extract in mitigating severe knowlesi malaria complications.

PMID:
42506754
Bibliographic data and abstract were imported from PubMed on 27 Jul 2026.

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