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Preclinical development of an oral anti-Wolbachia macrolide drug for the treatment of lymphatic filariasis and onchocerciasis

  • Mark J. Taylor
  • , Thomas W. Von Geldern
  • , Louise Ford
  • , Marc P. Hübner
  • , Kennan Marsh
  • , Kelly L. Johnston
  • , Hanna T. Sjoberg
  • , Sabine Specht
  • , Nicolas Pionnier
  • , Hayley E. Tyrer
  • , Rachel H. Clare
  • , Darren A.N. Cook
  • , Emma Murphy
  • , Andrew Steven
  • , John Archer
  • , Dominique Bloemker
  • , Franziska Lenz
  • , Marianne Koschel
  • , Alexandra Ehrens
  • , Haelly M. Metuge
  • Valerinne C. Chunda, Patrick W.Ndongmo Chounna, Abdel J. Njouendou, Fanny F. Fombad, Robert Carr, Howard E. Morton, Ghaith Aljayyoussi, Achim Hoerauf, Samuel Wanji, Dale J. Kempf, Joseph D. Turner, Stephen A. Ward*
*Corresponding author for this work
  • Liverpool School of Tropical Medicine
  • AbbVie
  • Franciscan University of Steubenville
  • University of Bonn
  • Research Centre for Drugs and Diagnostics
  • Research Foundation for Tropical Diseases and the Environment
  • University of Buea

Research output: Contribution to journalArticle (journal)peer-review

Abstract

There is an urgent global need for a safe macrofilaricide drug to accelerate elimination of the neglected tropical diseases onchocerciasis and lymphatic filariasis. From an anti-infective compound library, the macrolide veterinary antibiotic, tylosin A, was identified as a hit against Wolbachia. This bacterial endosymbiont is required for filarial worm viability and fertility and is a validated target for macrofilaricidal drugs. Medicinal chemistry was undertaken to develop tylosin A analogs with improved oral bioavailability. Two analogs, A-1535469 and A-1574083, were selected. Their efficacy was tested against the gold-standard second-generation tetracycline antibiotics, doxycycline and minocycline, in mouse and gerbil infection models of lymphatic filariasis (Brugia malayi and Litomosoides sigmodontis) and onchocerciasis (Onchocerca ochengi). A 1- or 2-week course of oral A-1535469 or A-1574083 provided >90% Wolbachia depletion from nematodes in infected animals, resulting in a block in embryogenesis and depletion of microfilarial worm loads. The two analogs delivered comparative or superior efficacy compared to a 3- to 4-week course of doxycycline or minocycline. A-1574083 (now called ABBV- 4083) was selected for further preclinical testing. Cardiovascular studies in dogs and toxicology studies in rats and dogs revealed no adverse effects at doses (50 mg/kg) that achieved plasma concentrations >10-fold above the efficacious concentration. A-1574083 (ABBV-4083) shows potential as an anti-Wolbachia macrolide with an efficacy, pharmacology, and safety profile that is compatible with a short-term oral drug course for treating lymphatic filariasis and onchocerciasis.

Original languageEnglish
Article numbereaau2086
Pages (from-to)1-10
JournalScience Translational Medicine
Volume11
Issue number483
DOIs
Publication statusPublished - 31 Mar 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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