A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.

Schistosomes are parasitic flatworms that infect over 200 million people, causing the neglected tropical disease, schistosomiasis. A single drug, praziquantel, is used to treat schistosome infection. Limitations in mass drug administration programs and the emergence of schistosomiasis in nontropical...

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Main Authors: Jiarong Gao, Ning Yang, Fred A Lewis, Peter Yau, James J Collins, Jonathan V Sweedler, Phillip A Newmark
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-10-01
Series:PLoS Biology
Online Access:https://doi.org/10.1371/journal.pbio.3000485
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spelling doaj-d562f634e428434e90cb5ac4de6f9c802021-07-02T21:22:05ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852019-10-011710e300048510.1371/journal.pbio.3000485A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.Jiarong GaoNing YangFred A LewisPeter YauJames J CollinsJonathan V SweedlerPhillip A NewmarkSchistosomes are parasitic flatworms that infect over 200 million people, causing the neglected tropical disease, schistosomiasis. A single drug, praziquantel, is used to treat schistosome infection. Limitations in mass drug administration programs and the emergence of schistosomiasis in nontropical areas indicate the need for new strategies to prevent infection. It has been known for several decades that rotifers colonizing the schistosome's snail intermediate host produce a water-soluble factor that paralyzes cercariae, the life cycle stage infecting humans. In spite of its potential for preventing infection, the nature of this factor has remained obscure. Here, we report the purification and chemical characterization of Schistosome Paralysis Factor (SPF), a novel tetracyclic alkaloid produced by the rotifer Rotaria rotatoria. We show that this compound paralyzes schistosome cercariae and prevents infection and does so more effectively than analogous compounds. This molecule provides new directions for understanding cercariae motility and new strategies for preventing schistosome infection.https://doi.org/10.1371/journal.pbio.3000485
collection DOAJ
language English
format Article
sources DOAJ
author Jiarong Gao
Ning Yang
Fred A Lewis
Peter Yau
James J Collins
Jonathan V Sweedler
Phillip A Newmark
spellingShingle Jiarong Gao
Ning Yang
Fred A Lewis
Peter Yau
James J Collins
Jonathan V Sweedler
Phillip A Newmark
A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
PLoS Biology
author_facet Jiarong Gao
Ning Yang
Fred A Lewis
Peter Yau
James J Collins
Jonathan V Sweedler
Phillip A Newmark
author_sort Jiarong Gao
title A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
title_short A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
title_full A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
title_fullStr A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
title_full_unstemmed A rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
title_sort rotifer-derived paralytic compound prevents transmission of schistosomiasis to a mammalian host.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2019-10-01
description Schistosomes are parasitic flatworms that infect over 200 million people, causing the neglected tropical disease, schistosomiasis. A single drug, praziquantel, is used to treat schistosome infection. Limitations in mass drug administration programs and the emergence of schistosomiasis in nontropical areas indicate the need for new strategies to prevent infection. It has been known for several decades that rotifers colonizing the schistosome's snail intermediate host produce a water-soluble factor that paralyzes cercariae, the life cycle stage infecting humans. In spite of its potential for preventing infection, the nature of this factor has remained obscure. Here, we report the purification and chemical characterization of Schistosome Paralysis Factor (SPF), a novel tetracyclic alkaloid produced by the rotifer Rotaria rotatoria. We show that this compound paralyzes schistosome cercariae and prevents infection and does so more effectively than analogous compounds. This molecule provides new directions for understanding cercariae motility and new strategies for preventing schistosome infection.
url https://doi.org/10.1371/journal.pbio.3000485
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