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A potato plant virus becomes a superbug-killing weapon

Ghouneimy A, Chaudhary S, Tehseen M, Saleh A, Serag M

Plant Signaling

The virus that stunts potato plants in your vegetable patch turns out to be a near-perfect delivery scaffold for fighting the antibiotic-resistant infections doctors are running out of options for.

Researchers took Potato virus X, a rod-shaped virus that normally just infects potato plants, and used its shape to hold many copies of bacteria-killing peptides at once. Packed onto this plant virus scaffold, the peptides became over 9,700 times more powerful and could destroy dangerous drug-resistant bacteria in as little as 10 minutes, while barely harming human cells.

Key Findings

1

Displaying antimicrobial peptides on the Potato virus X scaffold boosted their killing power more than 9,700-fold compared to free peptides.

2

The engineered virus particles (RPG) eradicated multidrug-resistant pathogens within 10-30 minutes, outperforming vancomycin, tigecycline, and cefiderocol.

3

RPG remained stable and active in serum, resisted protease breakdown, and stayed effective under physiological salt conditions while showing low toxicity to mammalian cells.

chevron_right Technical Summary

Scientists turned Potato virus X, a harmless plant virus, into a scaffold that displays antibiotic-killing peptides thousands of times more effectively than the peptides alone, wiping out drug-resistant bacteria faster than last-resort antibiotics.

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Abstract Preview

Original paper

Multivalent Display of Antimicrobial Peptides on Plant Virus Scaffolds Enhances Killing of Drug-Resistant Bacteria.

Multidrug-resistant (MDR) bacteria pose a significant challenge to global health. Antimicrobial peptides (AMPs) have emerged as promising candidates against MDR bacteria due to their rapid and broa...

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Abstract copyright held by the original publisher.

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