Cargando…

Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis

Onchocerciasis (river blindness), caused by the filarial worm Onchocerca volvulus, is a neglected tropical disease mostly affecting sub-Saharan Africa and is responsible for >1.3 million years lived with disability. Current control relies almost entirely on ivermectin, which suppresses symptoms c...

Descripción completa

Detalles Bibliográficos
Autores principales: Bah, Germanus S., Schneckener, Sebastian, Hahnel, Steffen R., Bayang, Nicolas H., Fieseler, Helena, Schmuck, Gabriele M., Krebber, Ralph, Sarr, Anouk, Terjung, Carsten, Ngangyung, Henrietta F., Ekale, David D., Mfopit, Youssouf M., Rufener, Lucien, Graham-Brown, John, Tanya, Vincent N., Glenschek-Sieberth, Martin, Kulke, Daniel, Makepeace, Benjamin L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8202924/
https://www.ncbi.nlm.nih.gov/pubmed/34077488
http://dx.doi.org/10.1371/journal.ppat.1009601
_version_ 1783708064849854464
author Bah, Germanus S.
Schneckener, Sebastian
Hahnel, Steffen R.
Bayang, Nicolas H.
Fieseler, Helena
Schmuck, Gabriele M.
Krebber, Ralph
Sarr, Anouk
Terjung, Carsten
Ngangyung, Henrietta F.
Ekale, David D.
Mfopit, Youssouf M.
Rufener, Lucien
Graham-Brown, John
Tanya, Vincent N.
Glenschek-Sieberth, Martin
Kulke, Daniel
Makepeace, Benjamin L.
author_facet Bah, Germanus S.
Schneckener, Sebastian
Hahnel, Steffen R.
Bayang, Nicolas H.
Fieseler, Helena
Schmuck, Gabriele M.
Krebber, Ralph
Sarr, Anouk
Terjung, Carsten
Ngangyung, Henrietta F.
Ekale, David D.
Mfopit, Youssouf M.
Rufener, Lucien
Graham-Brown, John
Tanya, Vincent N.
Glenschek-Sieberth, Martin
Kulke, Daniel
Makepeace, Benjamin L.
author_sort Bah, Germanus S.
collection PubMed
description Onchocerciasis (river blindness), caused by the filarial worm Onchocerca volvulus, is a neglected tropical disease mostly affecting sub-Saharan Africa and is responsible for >1.3 million years lived with disability. Current control relies almost entirely on ivermectin, which suppresses symptoms caused by the first-stage larvae (microfilariae) but does not kill the long-lived adults. Here, we evaluated emodepside, a semi-synthetic cyclooctadepsipeptide registered for deworming applications in companion animals, for activity against adult filariae (i.e., as a macrofilaricide). We demonstrate the equivalence of emodepside activity on SLO-1 potassium channels in Onchocerca volvulus and Onchocerca ochengi, its sister species from cattle. Evaluation of emodepside in cattle as single or 7-day treatments at two doses (0.15 and 0.75 mg/kg) revealed rapid activity against microfilariae, prolonged suppression of female worm fecundity, and macrofilaricidal effects by 18 months post treatment. The drug was well tolerated, causing only transiently increased blood glucose. Female adult worms were mostly paralyzed; however, some retained metabolic activity even in the multiple high-dose group. These data support ongoing clinical development of emodepside to treat river blindness.
format Online
Article
Text
id pubmed-8202924
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-82029242021-06-29 Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis Bah, Germanus S. Schneckener, Sebastian Hahnel, Steffen R. Bayang, Nicolas H. Fieseler, Helena Schmuck, Gabriele M. Krebber, Ralph Sarr, Anouk Terjung, Carsten Ngangyung, Henrietta F. Ekale, David D. Mfopit, Youssouf M. Rufener, Lucien Graham-Brown, John Tanya, Vincent N. Glenschek-Sieberth, Martin Kulke, Daniel Makepeace, Benjamin L. PLoS Pathog Research Article Onchocerciasis (river blindness), caused by the filarial worm Onchocerca volvulus, is a neglected tropical disease mostly affecting sub-Saharan Africa and is responsible for >1.3 million years lived with disability. Current control relies almost entirely on ivermectin, which suppresses symptoms caused by the first-stage larvae (microfilariae) but does not kill the long-lived adults. Here, we evaluated emodepside, a semi-synthetic cyclooctadepsipeptide registered for deworming applications in companion animals, for activity against adult filariae (i.e., as a macrofilaricide). We demonstrate the equivalence of emodepside activity on SLO-1 potassium channels in Onchocerca volvulus and Onchocerca ochengi, its sister species from cattle. Evaluation of emodepside in cattle as single or 7-day treatments at two doses (0.15 and 0.75 mg/kg) revealed rapid activity against microfilariae, prolonged suppression of female worm fecundity, and macrofilaricidal effects by 18 months post treatment. The drug was well tolerated, causing only transiently increased blood glucose. Female adult worms were mostly paralyzed; however, some retained metabolic activity even in the multiple high-dose group. These data support ongoing clinical development of emodepside to treat river blindness. Public Library of Science 2021-06-02 /pmc/articles/PMC8202924/ /pubmed/34077488 http://dx.doi.org/10.1371/journal.ppat.1009601 Text en © 2021 Bah et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bah, Germanus S.
Schneckener, Sebastian
Hahnel, Steffen R.
Bayang, Nicolas H.
Fieseler, Helena
Schmuck, Gabriele M.
Krebber, Ralph
Sarr, Anouk
Terjung, Carsten
Ngangyung, Henrietta F.
Ekale, David D.
Mfopit, Youssouf M.
Rufener, Lucien
Graham-Brown, John
Tanya, Vincent N.
Glenschek-Sieberth, Martin
Kulke, Daniel
Makepeace, Benjamin L.
Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
title Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
title_full Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
title_fullStr Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
title_full_unstemmed Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
title_short Emodepside targets SLO-1 channels of Onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
title_sort emodepside targets slo-1 channels of onchocerca ochengi and induces broad anthelmintic effects in a bovine model of onchocerciasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8202924/
https://www.ncbi.nlm.nih.gov/pubmed/34077488
http://dx.doi.org/10.1371/journal.ppat.1009601
work_keys_str_mv AT bahgermanuss emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT schneckenersebastian emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT hahnelsteffenr emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT bayangnicolash emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT fieselerhelena emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT schmuckgabrielem emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT krebberralph emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT sarranouk emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT terjungcarsten emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT ngangyunghenriettaf emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT ekaledavidd emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT mfopityoussoufm emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT rufenerlucien emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT grahambrownjohn emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT tanyavincentn emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT glenscheksieberthmartin emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT kulkedaniel emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis
AT makepeacebenjaminl emodepsidetargetsslo1channelsofonchocercaochengiandinducesbroadanthelminticeffectsinabovinemodelofonchocerciasis