A single-dose topical therapy cures scabies in a human-relevant porcine model

Scabies affects ∼400 million people annually, yet current therapies lack ovicidal activity, require repeat dosing, and are increasingly compromised by treatment failure and resistance. The absence of a single-application therapy capable of eliminating both motile mites and eggs represents one important limitation to effective disease control. We developed a mechanism-informed topical therapy combining abametapir, a metalloprotease inhibitor with ovicidal activity, and flavesone, a β-triketone with rapid miticidal effects, designed to target multiple parasite life stages through distinct, non-neurotoxic mechanisms. Using a porcine model that closely recapitulates human scabies, we assessed efficacy, pruritus reduction, and pharmacologic exposure after topical administration. In severe scabies, a single 4-hour treatment eradicated all live mites and eggs and reduced pruritus, outperforming a standard two-dose oral ivermectin regimen. Skin pharmacokinetics demonstrated rapid attainment of concentrations with exposure profiles, supporting single-dose efficacy despite shorter systemic half-lives than ivermectin. Together, this promising therapeutic combination may offer a simplified and potentially resistance-resilient approach to scabies management.

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Publication Details

Journal
Science Translational Medicine
Published
2026-09-30
DOI
https://doi.org/10.1126/scitranslmed.aeg5917
Primary Topic
Dermatological diseases and infestations
Type
article
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article

A single-dose topical therapy cures scabies in a human-relevant porcine model

Sara Taylor, Katja Fischer, Vernon M Bowles, Günter Härtel et al.
Science Translational Medicine
Dermatological diseases and infestations
article

A single-dose topical therapy cures scabies in a human-relevant porcine model

Sara Taylor, Katja Fischer, Vernon M Bowles, Günter Härtel, Deepani Darshika Fernando, Gangi R. Samarawickrama, Nirupama A Nammunige
article en

Abstract

Scabies affects ∼400 million people annually, yet current therapies lack ovicidal activity, require repeat dosing, and are increasingly compromised by treatment failure and resistance. The absence of a single-application therapy capable of eliminating both motile mites and eggs represents one important limitation to effective disease control. We developed a mechanism-informed topical therapy combining abametapir, a metalloprotease inhibitor with ovicidal activity, and flavesone, a β-triketone with rapid miticidal effects, designed to target multiple parasite life stages through distinct, non-neurotoxic mechanisms. Using a porcine model that closely recapitulates human scabies, we assessed efficacy, pruritus reduction, and pharmacologic exposure after topical administration. In severe scabies, a single 4-hour treatment eradicated all live mites and eggs and reduced pruritus, outperforming a standard two-dose oral ivermectin regimen. Skin pharmacokinetics demonstrated rapid attainment of concentrations with exposure profiles, supporting single-dose efficacy despite shorter systemic half-lives than ivermectin. Together, this promising therapeutic combination may offer a simplified and potentially resistance-resilient approach to scabies management.

Science Translational MedicineVol. 18(869)
Queensland University of Technology (AU), The University of Queensland (AU), The University of Melbourne (AU), QIMR Berghofer Medical Research Institute (AU)
Openalex Percentile: Top 12%
Dermatological diseases and infestations
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A single-dose topical therapy cures scabies in a human-relevant porcine model — Sara Taylor, Katja Fischer, et al. · Science Translational Medicine (2026) | TGRS Research Map | TGRS