Antimicrobial Peptides Selectively Target Malaria Parasites by a Cholesterol-Dependent Mechanism

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Kiper, Edo;Ben Hur, Daniel

Description

Hundreds of thousands die annually from malaria caused by Plasmodium falciparum (Pf), with the emergence of drug-resistant parasites hindering eradication efforts. Antimicrobial peptides (AMPs) are known for their ability to disrupt pathogen membranes without targeting specific receptors, thereby reducing the chance of drug resistance. However, their effectiveness and the biophysical mechanisms by which they target the intracellular parasite remain unexplored. Here, by using native and synthetic AMPs, we discovered a selective mechanism that underlies the anti-malaria activity. Remarkably, the AMPs exclusively interact with Pf-infected Red Blood Cells (Pf-iRBCs), disrupting the cytoskeletal network and reaching the enclosed parasites with correlation to their activity. Moreover, we showed that the unique feature of reduced cholesterol content in the membrane of the infected host makes Pf-iRBCs susceptible to AMPs. Overall, this work highlights the Achilles’ heel of malaria parasite and demonstrates the power of AMPs as potential antimalarial drugs with reduced risk of resistance.

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Mentions (0)

Metrics

Dataset Index

0.9

FAIR Score

79%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Zenodo

License

Creative Commons Attribution 4.0 International

Assigned Domain

Subfield

Infectious Diseases

Field

Medicine

Domain

Health Sciences

Confidence Score

97%

Source

Open Alex

Normalization Factors

FT

49.04

CTw

1.00

MTw

1.00