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The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system
Filarial nematodes can cause debilitating diseases such as lymphatic filariasis and onchocerciasis. Oxfendazole (OXF) is one promising macrofilaricidal candidate with improved oral availability compared to flubendazole (FBZ), and OXF is currently under preparation for phase 2 clinical trials in fila...
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Frontiers Media S.A.
2023
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10335397/ https://www.ncbi.nlm.nih.gov/pubmed/37440891 http://dx.doi.org/10.3389/fmicb.2023.1213143 |
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author | Risch, Frederic Scheunemann, Johanna F. Reichwald, Julia J. Lenz, Benjamin Ehrens, Alexandra Gal, Joséphine Fercoq, Frédéric Koschel, Marianne Fendler, Martina Hoerauf, Achim Martin, Coralie Hübner, Marc P. |
author_facet | Risch, Frederic Scheunemann, Johanna F. Reichwald, Julia J. Lenz, Benjamin Ehrens, Alexandra Gal, Joséphine Fercoq, Frédéric Koschel, Marianne Fendler, Martina Hoerauf, Achim Martin, Coralie Hübner, Marc P. |
author_sort | Risch, Frederic |
collection | PubMed |
description | Filarial nematodes can cause debilitating diseases such as lymphatic filariasis and onchocerciasis. Oxfendazole (OXF) is one promising macrofilaricidal candidate with improved oral availability compared to flubendazole (FBZ), and OXF is currently under preparation for phase 2 clinical trials in filariasis patients. This study aimed to investigate the immune system’s role during treatment with OXF and FBZ and explore the potential to boost the treatment efficacy via stimulation of the immune system. Wild type (WT) BALB/c, eosinophil-deficient ΔdblGata1, IL-4r/IL-5(−/−), antibody-deficient μMT and B-, T-, NK-cell and ILC-deficient Rag2/IL-2rγ(−/−) mice were infected with the rodent filaria Litomosoides sigmodontis and treated with an optimal and suboptimal regimen of OXF and FBZ for up to 5 days. In the second part, WT mice were treated for 2–3 days with a combination of OXF and IL-4, IL-5, or IL-33. Treatment of WT mice reduced the adult worm burden by up to 94% (OXF) and 100% (FBZ) compared to vehicle controls. In contrast, treatment efficacy was lower in all immunodeficient strains with a reduction of up to 90% (OXF) and 75% (FBZ) for ΔdblGata1, 50 and 92% for IL-4r/IL-5(−/−), 64 and 78% for μMT or 0% for Rag2/IL-2rγ(−/−) mice. The effect of OXF on microfilariae and embryogenesis displayed a similar pattern, while FBZ’s ability to prevent microfilaremia was independent of the host’s immune status. Furthermore, flow cytometric analysis revealed strain-and treatment-specific immunological changes. The efficacy of a shortened 3-day treatment of OXF (−33% adult worms vs. vehicle) could be boosted to a 91% worm burden reduction via combination with IL-5, but not IL-4 or IL-33. Our results suggest that various components of the immune system support the filaricidal effect of benzimidazoles in vivo and present an opportunity to boost treatment efficacy. |
format | Online Article Text |
id | pubmed-10335397 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-103353972023-07-12 The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system Risch, Frederic Scheunemann, Johanna F. Reichwald, Julia J. Lenz, Benjamin Ehrens, Alexandra Gal, Joséphine Fercoq, Frédéric Koschel, Marianne Fendler, Martina Hoerauf, Achim Martin, Coralie Hübner, Marc P. Front Microbiol Microbiology Filarial nematodes can cause debilitating diseases such as lymphatic filariasis and onchocerciasis. Oxfendazole (OXF) is one promising macrofilaricidal candidate with improved oral availability compared to flubendazole (FBZ), and OXF is currently under preparation for phase 2 clinical trials in filariasis patients. This study aimed to investigate the immune system’s role during treatment with OXF and FBZ and explore the potential to boost the treatment efficacy via stimulation of the immune system. Wild type (WT) BALB/c, eosinophil-deficient ΔdblGata1, IL-4r/IL-5(−/−), antibody-deficient μMT and B-, T-, NK-cell and ILC-deficient Rag2/IL-2rγ(−/−) mice were infected with the rodent filaria Litomosoides sigmodontis and treated with an optimal and suboptimal regimen of OXF and FBZ for up to 5 days. In the second part, WT mice were treated for 2–3 days with a combination of OXF and IL-4, IL-5, or IL-33. Treatment of WT mice reduced the adult worm burden by up to 94% (OXF) and 100% (FBZ) compared to vehicle controls. In contrast, treatment efficacy was lower in all immunodeficient strains with a reduction of up to 90% (OXF) and 75% (FBZ) for ΔdblGata1, 50 and 92% for IL-4r/IL-5(−/−), 64 and 78% for μMT or 0% for Rag2/IL-2rγ(−/−) mice. The effect of OXF on microfilariae and embryogenesis displayed a similar pattern, while FBZ’s ability to prevent microfilaremia was independent of the host’s immune status. Furthermore, flow cytometric analysis revealed strain-and treatment-specific immunological changes. The efficacy of a shortened 3-day treatment of OXF (−33% adult worms vs. vehicle) could be boosted to a 91% worm burden reduction via combination with IL-5, but not IL-4 or IL-33. Our results suggest that various components of the immune system support the filaricidal effect of benzimidazoles in vivo and present an opportunity to boost treatment efficacy. Frontiers Media S.A. 2023-06-27 /pmc/articles/PMC10335397/ /pubmed/37440891 http://dx.doi.org/10.3389/fmicb.2023.1213143 Text en Copyright © 2023 Risch, Scheunemann, Reichwald, Lenz, Ehrens, Gal, Fercoq, Koschel, Fendler, Hoerauf, Martin and Hübner. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Microbiology Risch, Frederic Scheunemann, Johanna F. Reichwald, Julia J. Lenz, Benjamin Ehrens, Alexandra Gal, Joséphine Fercoq, Frédéric Koschel, Marianne Fendler, Martina Hoerauf, Achim Martin, Coralie Hübner, Marc P. The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system |
title | The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system |
title_full | The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system |
title_fullStr | The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system |
title_full_unstemmed | The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system |
title_short | The efficacy of the benzimidazoles oxfendazole and flubendazole against Litomosoides sigmodontis is dependent on the adaptive and innate immune system |
title_sort | efficacy of the benzimidazoles oxfendazole and flubendazole against litomosoides sigmodontis is dependent on the adaptive and innate immune system |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10335397/ https://www.ncbi.nlm.nih.gov/pubmed/37440891 http://dx.doi.org/10.3389/fmicb.2023.1213143 |
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