Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy

<p>Abstract</p> <p>Background</p> <p>Miltefosine, which is the first oral drug licensed for the treatment of leishmaniasis, was recently reported to be a promising lead compound for the synthesis of novel antischistosomal derivatives with potent activity <it>in vi...

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Main Authors: El Bardicy Samia, Eissa Maha M, Tadros Menerva
Format: Article
Language:English
Published: BMC 2011-05-01
Series:Parasites & Vectors
Online Access:http://www.parasitesandvectors.com/content/4/1/73
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spelling doaj-5b4e7100bb034a8a9bbfef515814bc312020-11-24T21:37:09ZengBMCParasites & Vectors1756-33052011-05-01417310.1186/1756-3305-4-73Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopyEl Bardicy SamiaEissa Maha MTadros Menerva<p>Abstract</p> <p>Background</p> <p>Miltefosine, which is the first oral drug licensed for the treatment of leishmaniasis, was recently reported to be a promising lead compound for the synthesis of novel antischistosomal derivatives with potent activity <it>in vivo </it>against different developmental stages of <it>Schistosoma mansoni</it>. In this paper an <it>in vitro </it>study was carried out to investigate whether it has a biocidal activity against the aquatic stages of <it>Schistosoma mansoni </it>and its snail intermediate host, <it>Biomphalaria alexandrina </it>, thus being also a molluscicide. Additionally, to see whether miltefosine can have a broad spectrum antischistosomal activity, a similar <it>in vitro </it>study was carried out on the adult stage of <it>Schistosoma haematobium</it>, the second major human species, its larval stages and snail intermediate host, <it>Bulinus truncutes</it>. This was checked by scanning electron microscopy.</p> <p>Results</p> <p>Miltefosine proved to have <it>in vitro </it>ovicidal, schistolarvicidal and lethal activity on adult worms of both <it>Schistosoma </it>species and has considerable molluscicidal activity on their snail hosts. Scanning electron microscopy revealed several morphological changes on the different stages of the parasite and on the soft body of the snail, which further strengthens the current evidence of miltefosine's activity. This is the first report of mollusicidal activity of miltefosine and its <it>in vitro </it>schistosomicidal activity against <it>S.haematobium</it>.</p> <p>Conclusions</p> <p>This study highlights miltefosine not only as a potential promising lead compound for the synthesis of novel broad spectrum schistosomicidal derivatives, but also for molluscicidals.</p> http://www.parasitesandvectors.com/content/4/1/73
collection DOAJ
language English
format Article
sources DOAJ
author El Bardicy Samia
Eissa Maha M
Tadros Menerva
spellingShingle El Bardicy Samia
Eissa Maha M
Tadros Menerva
Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
Parasites & Vectors
author_facet El Bardicy Samia
Eissa Maha M
Tadros Menerva
author_sort El Bardicy Samia
title Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
title_short Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
title_full Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
title_fullStr Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
title_full_unstemmed Bioactivity of miltefosine against aquatic stages of <it>Schistosoma mansoni, Schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
title_sort bioactivity of miltefosine against aquatic stages of <it>schistosoma mansoni, schistosoma haematobium </it>and their snail hosts, supported by scanning electron microscopy
publisher BMC
series Parasites & Vectors
issn 1756-3305
publishDate 2011-05-01
description <p>Abstract</p> <p>Background</p> <p>Miltefosine, which is the first oral drug licensed for the treatment of leishmaniasis, was recently reported to be a promising lead compound for the synthesis of novel antischistosomal derivatives with potent activity <it>in vivo </it>against different developmental stages of <it>Schistosoma mansoni</it>. In this paper an <it>in vitro </it>study was carried out to investigate whether it has a biocidal activity against the aquatic stages of <it>Schistosoma mansoni </it>and its snail intermediate host, <it>Biomphalaria alexandrina </it>, thus being also a molluscicide. Additionally, to see whether miltefosine can have a broad spectrum antischistosomal activity, a similar <it>in vitro </it>study was carried out on the adult stage of <it>Schistosoma haematobium</it>, the second major human species, its larval stages and snail intermediate host, <it>Bulinus truncutes</it>. This was checked by scanning electron microscopy.</p> <p>Results</p> <p>Miltefosine proved to have <it>in vitro </it>ovicidal, schistolarvicidal and lethal activity on adult worms of both <it>Schistosoma </it>species and has considerable molluscicidal activity on their snail hosts. Scanning electron microscopy revealed several morphological changes on the different stages of the parasite and on the soft body of the snail, which further strengthens the current evidence of miltefosine's activity. This is the first report of mollusicidal activity of miltefosine and its <it>in vitro </it>schistosomicidal activity against <it>S.haematobium</it>.</p> <p>Conclusions</p> <p>This study highlights miltefosine not only as a potential promising lead compound for the synthesis of novel broad spectrum schistosomicidal derivatives, but also for molluscicidals.</p>
url http://www.parasitesandvectors.com/content/4/1/73
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