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Novel antiinflammatory biologics shaped by parasite–host coevolution

Parasitic helminth infections, while a major cause of neglected tropical disease burden, negatively correlate with the incidence of immune-mediated inflammatory diseases such as inflammatory bowel diseases (IBD). To evade expulsion, helminths have developed sophisticated mechanisms to regulate their...

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Autores principales: Ryan, Stephanie M., Ruscher, Roland, Johnston, Wayne A., Pickering, Darren A., Kennedy, Malcolm W., Smith, Brian O., Jones, Linda, Buitrago, Geraldine, Field, Matt A., Esterman, Adrian J., McHugh, Connor P., Browne, Daniel J., Cooper, Martha M., Ryan, Rachael Y. M., Doolan, Denise L., Engwerda, Christian R., Miles, Kim, Mitreva, Makedonka, Croese, John, Rahman, Tony, Alexandrov, Kirill, Giacomin, Paul R., Loukas, Alex
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9457177/
https://www.ncbi.nlm.nih.gov/pubmed/36037362
http://dx.doi.org/10.1073/pnas.2202795119
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author Ryan, Stephanie M.
Ruscher, Roland
Johnston, Wayne A.
Pickering, Darren A.
Kennedy, Malcolm W.
Smith, Brian O.
Jones, Linda
Buitrago, Geraldine
Field, Matt A.
Esterman, Adrian J.
McHugh, Connor P.
Browne, Daniel J.
Cooper, Martha M.
Ryan, Rachael Y. M.
Doolan, Denise L.
Engwerda, Christian R.
Miles, Kim
Mitreva, Makedonka
Croese, John
Rahman, Tony
Alexandrov, Kirill
Giacomin, Paul R.
Loukas, Alex
author_facet Ryan, Stephanie M.
Ruscher, Roland
Johnston, Wayne A.
Pickering, Darren A.
Kennedy, Malcolm W.
Smith, Brian O.
Jones, Linda
Buitrago, Geraldine
Field, Matt A.
Esterman, Adrian J.
McHugh, Connor P.
Browne, Daniel J.
Cooper, Martha M.
Ryan, Rachael Y. M.
Doolan, Denise L.
Engwerda, Christian R.
Miles, Kim
Mitreva, Makedonka
Croese, John
Rahman, Tony
Alexandrov, Kirill
Giacomin, Paul R.
Loukas, Alex
author_sort Ryan, Stephanie M.
collection PubMed
description Parasitic helminth infections, while a major cause of neglected tropical disease burden, negatively correlate with the incidence of immune-mediated inflammatory diseases such as inflammatory bowel diseases (IBD). To evade expulsion, helminths have developed sophisticated mechanisms to regulate their host’s immune responses. Controlled experimental human helminth infections have been assessed clinically for treating inflammatory conditions; however, such a radical therapeutic modality has challenges. An alternative approach is to harness the immunomodulatory properties within the worm’s excretory–secretory (ES) complement, its secretome. Here, we report a biologics discovery and validation pipeline to generate and screen in vivo a recombinant cell-free secretome library of helminth-derived immunomodulatory proteins. We successfully expressed 78 recombinant ES proteins from gastrointestinal hookworms and screened the crude in vitro translation reactions for anti-IBD properties in a mouse model of acute colitis. After statistical filtering and ranking, 20 proteins conferred significant protection against various parameters of colitis. Lead candidates from distinct protein families, including annexins, transthyretins, nematode-specific retinol-binding proteins, and SCP/TAPS were identified. Representative proteins were produced in mammalian cells and further validated, including ex vivo suppression of inflammatory cytokine secretion by T cells from IBD patient colon biopsies. Proteins identified herein offer promise as novel, safe, and mechanistically differentiated biologics for treating the globally increasing burden of inflammatory diseases.
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spelling pubmed-94571772023-03-01 Novel antiinflammatory biologics shaped by parasite–host coevolution Ryan, Stephanie M. Ruscher, Roland Johnston, Wayne A. Pickering, Darren A. Kennedy, Malcolm W. Smith, Brian O. Jones, Linda Buitrago, Geraldine Field, Matt A. Esterman, Adrian J. McHugh, Connor P. Browne, Daniel J. Cooper, Martha M. Ryan, Rachael Y. M. Doolan, Denise L. Engwerda, Christian R. Miles, Kim Mitreva, Makedonka Croese, John Rahman, Tony Alexandrov, Kirill Giacomin, Paul R. Loukas, Alex Proc Natl Acad Sci U S A Biological Sciences Parasitic helminth infections, while a major cause of neglected tropical disease burden, negatively correlate with the incidence of immune-mediated inflammatory diseases such as inflammatory bowel diseases (IBD). To evade expulsion, helminths have developed sophisticated mechanisms to regulate their host’s immune responses. Controlled experimental human helminth infections have been assessed clinically for treating inflammatory conditions; however, such a radical therapeutic modality has challenges. An alternative approach is to harness the immunomodulatory properties within the worm’s excretory–secretory (ES) complement, its secretome. Here, we report a biologics discovery and validation pipeline to generate and screen in vivo a recombinant cell-free secretome library of helminth-derived immunomodulatory proteins. We successfully expressed 78 recombinant ES proteins from gastrointestinal hookworms and screened the crude in vitro translation reactions for anti-IBD properties in a mouse model of acute colitis. After statistical filtering and ranking, 20 proteins conferred significant protection against various parameters of colitis. Lead candidates from distinct protein families, including annexins, transthyretins, nematode-specific retinol-binding proteins, and SCP/TAPS were identified. Representative proteins were produced in mammalian cells and further validated, including ex vivo suppression of inflammatory cytokine secretion by T cells from IBD patient colon biopsies. Proteins identified herein offer promise as novel, safe, and mechanistically differentiated biologics for treating the globally increasing burden of inflammatory diseases. National Academy of Sciences 2022-08-29 2022-09-06 /pmc/articles/PMC9457177/ /pubmed/36037362 http://dx.doi.org/10.1073/pnas.2202795119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Ryan, Stephanie M.
Ruscher, Roland
Johnston, Wayne A.
Pickering, Darren A.
Kennedy, Malcolm W.
Smith, Brian O.
Jones, Linda
Buitrago, Geraldine
Field, Matt A.
Esterman, Adrian J.
McHugh, Connor P.
Browne, Daniel J.
Cooper, Martha M.
Ryan, Rachael Y. M.
Doolan, Denise L.
Engwerda, Christian R.
Miles, Kim
Mitreva, Makedonka
Croese, John
Rahman, Tony
Alexandrov, Kirill
Giacomin, Paul R.
Loukas, Alex
Novel antiinflammatory biologics shaped by parasite–host coevolution
title Novel antiinflammatory biologics shaped by parasite–host coevolution
title_full Novel antiinflammatory biologics shaped by parasite–host coevolution
title_fullStr Novel antiinflammatory biologics shaped by parasite–host coevolution
title_full_unstemmed Novel antiinflammatory biologics shaped by parasite–host coevolution
title_short Novel antiinflammatory biologics shaped by parasite–host coevolution
title_sort novel antiinflammatory biologics shaped by parasite–host coevolution
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9457177/
https://www.ncbi.nlm.nih.gov/pubmed/36037362
http://dx.doi.org/10.1073/pnas.2202795119
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