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A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence

Recurrences frequently occur following surgical removal of primary tumors. In many cancers, adjuvant therapies have limited efficacy. Surgery provides access to the tumor microenvironment, creating an opportunity for local therapy, in particular immunotherapy, which can induce local and systemic ant...

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Autores principales: Rwandamuriye, Francois Xavier, Evans, Cameron W., Wylie, Ben, Norret, Marck, Vitali, Breana, Ho, Diwei, Nguyen, Dat, Roper, Ellise A., Wang, Tao, Hepburn, Matt S., Sanderson, Rowan W., Pfirrmann, Maren, Fear, Vanessa S., Forbes, Catherine A., Wyatt, Ken, Ryan, Anne L., Johns, Terrance G., Phillips, Marianne B., Hodder, Rupert, Leslie, Connull, Kennedy, Brendan F., Zemek, Rachael M., Iyer, Killugudi Swaminathan, Lesterhuis, Willem Joost
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10394259/
https://www.ncbi.nlm.nih.gov/pubmed/37467718
http://dx.doi.org/10.1016/j.xcrm.2023.101113
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author Rwandamuriye, Francois Xavier
Evans, Cameron W.
Wylie, Ben
Norret, Marck
Vitali, Breana
Ho, Diwei
Nguyen, Dat
Roper, Ellise A.
Wang, Tao
Hepburn, Matt S.
Sanderson, Rowan W.
Pfirrmann, Maren
Fear, Vanessa S.
Forbes, Catherine A.
Wyatt, Ken
Ryan, Anne L.
Johns, Terrance G.
Phillips, Marianne B.
Hodder, Rupert
Leslie, Connull
Kennedy, Brendan F.
Zemek, Rachael M.
Iyer, Killugudi Swaminathan
Lesterhuis, Willem Joost
author_facet Rwandamuriye, Francois Xavier
Evans, Cameron W.
Wylie, Ben
Norret, Marck
Vitali, Breana
Ho, Diwei
Nguyen, Dat
Roper, Ellise A.
Wang, Tao
Hepburn, Matt S.
Sanderson, Rowan W.
Pfirrmann, Maren
Fear, Vanessa S.
Forbes, Catherine A.
Wyatt, Ken
Ryan, Anne L.
Johns, Terrance G.
Phillips, Marianne B.
Hodder, Rupert
Leslie, Connull
Kennedy, Brendan F.
Zemek, Rachael M.
Iyer, Killugudi Swaminathan
Lesterhuis, Willem Joost
author_sort Rwandamuriye, Francois Xavier
collection PubMed
description Recurrences frequently occur following surgical removal of primary tumors. In many cancers, adjuvant therapies have limited efficacy. Surgery provides access to the tumor microenvironment, creating an opportunity for local therapy, in particular immunotherapy, which can induce local and systemic anti-cancer effects. Here, we develop a surgically optimized biodegradable hyaluronic acid-based hydrogel for sustained intraoperative delivery of Toll-like receptor 3 agonist poly(I:C) and demonstrate that it significantly reduces tumor recurrence after surgery in multiple mouse models. Mechanistically, poly(I:C) induces a transient interferon alpha (IFNα) response, reshaping the tumor/wound microenvironment by attracting inflammatory monocytes and depleting regulatory T cells. We demonstrate that a pre-existing IFN signature predicts response to the poly(I:C) hydrogel, which sensitizes tumors to immune checkpoint therapy. The safety, immunogenicity, and surgical feasibility are confirmed in a veterinary trial in canine soft tissue tumors. The surgically optimized poly(I:C)-loaded hydrogel provides a safe and effective approach to prevent cancer recurrence.
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spelling pubmed-103942592023-08-03 A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence Rwandamuriye, Francois Xavier Evans, Cameron W. Wylie, Ben Norret, Marck Vitali, Breana Ho, Diwei Nguyen, Dat Roper, Ellise A. Wang, Tao Hepburn, Matt S. Sanderson, Rowan W. Pfirrmann, Maren Fear, Vanessa S. Forbes, Catherine A. Wyatt, Ken Ryan, Anne L. Johns, Terrance G. Phillips, Marianne B. Hodder, Rupert Leslie, Connull Kennedy, Brendan F. Zemek, Rachael M. Iyer, Killugudi Swaminathan Lesterhuis, Willem Joost Cell Rep Med Article Recurrences frequently occur following surgical removal of primary tumors. In many cancers, adjuvant therapies have limited efficacy. Surgery provides access to the tumor microenvironment, creating an opportunity for local therapy, in particular immunotherapy, which can induce local and systemic anti-cancer effects. Here, we develop a surgically optimized biodegradable hyaluronic acid-based hydrogel for sustained intraoperative delivery of Toll-like receptor 3 agonist poly(I:C) and demonstrate that it significantly reduces tumor recurrence after surgery in multiple mouse models. Mechanistically, poly(I:C) induces a transient interferon alpha (IFNα) response, reshaping the tumor/wound microenvironment by attracting inflammatory monocytes and depleting regulatory T cells. We demonstrate that a pre-existing IFN signature predicts response to the poly(I:C) hydrogel, which sensitizes tumors to immune checkpoint therapy. The safety, immunogenicity, and surgical feasibility are confirmed in a veterinary trial in canine soft tissue tumors. The surgically optimized poly(I:C)-loaded hydrogel provides a safe and effective approach to prevent cancer recurrence. Elsevier 2023-07-18 /pmc/articles/PMC10394259/ /pubmed/37467718 http://dx.doi.org/10.1016/j.xcrm.2023.101113 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rwandamuriye, Francois Xavier
Evans, Cameron W.
Wylie, Ben
Norret, Marck
Vitali, Breana
Ho, Diwei
Nguyen, Dat
Roper, Ellise A.
Wang, Tao
Hepburn, Matt S.
Sanderson, Rowan W.
Pfirrmann, Maren
Fear, Vanessa S.
Forbes, Catherine A.
Wyatt, Ken
Ryan, Anne L.
Johns, Terrance G.
Phillips, Marianne B.
Hodder, Rupert
Leslie, Connull
Kennedy, Brendan F.
Zemek, Rachael M.
Iyer, Killugudi Swaminathan
Lesterhuis, Willem Joost
A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence
title A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence
title_full A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence
title_fullStr A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence
title_full_unstemmed A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence
title_short A surgically optimized intraoperative poly(I:C)-releasing hydrogel prevents cancer recurrence
title_sort surgically optimized intraoperative poly(i:c)-releasing hydrogel prevents cancer recurrence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10394259/
https://www.ncbi.nlm.nih.gov/pubmed/37467718
http://dx.doi.org/10.1016/j.xcrm.2023.101113
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