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ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo

Background: ICOS and its ligand ICOSL are immune receptors whose interaction triggers bidirectional signals that modulate the immune response and tissue repair. Aim: The aim of this study was to assess the in vivo effects of ICOSL triggering by ICOS-Fc, a recombinant soluble form of ICOS, on skin wo...

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Autores principales: Stoppa, Ian, Gigliotti, Casimiro Luca, Clemente, Nausicaa, Pantham, Deepika, Dianzani, Chiara, Monge, Chiara, Puricelli, Chiara, Rolla, Roberta, Sutti, Salvatore, Renò, Filippo, Boldorini, Renzo, Boggio, Elena, Dianzani, Umberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266942/
https://www.ncbi.nlm.nih.gov/pubmed/35806368
http://dx.doi.org/10.3390/ijms23137363
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author Stoppa, Ian
Gigliotti, Casimiro Luca
Clemente, Nausicaa
Pantham, Deepika
Dianzani, Chiara
Monge, Chiara
Puricelli, Chiara
Rolla, Roberta
Sutti, Salvatore
Renò, Filippo
Boldorini, Renzo
Boggio, Elena
Dianzani, Umberto
author_facet Stoppa, Ian
Gigliotti, Casimiro Luca
Clemente, Nausicaa
Pantham, Deepika
Dianzani, Chiara
Monge, Chiara
Puricelli, Chiara
Rolla, Roberta
Sutti, Salvatore
Renò, Filippo
Boldorini, Renzo
Boggio, Elena
Dianzani, Umberto
author_sort Stoppa, Ian
collection PubMed
description Background: ICOS and its ligand ICOSL are immune receptors whose interaction triggers bidirectional signals that modulate the immune response and tissue repair. Aim: The aim of this study was to assess the in vivo effects of ICOSL triggering by ICOS-Fc, a recombinant soluble form of ICOS, on skin wound healing. Methods: The effect of human ICOS-Fc on wound healing was assessed, in vitro, and, in vivo, by skin wound healing assay using ICOS(−/−) and ICOSL(−/−) knockout (KO) mice and NOD-SCID-IL2R null (NSG) mice. Results: We show that, in wild type mice, treatment with ICOS-Fc improves wound healing, promotes angiogenesis, preceded by upregulation of IL-6 and VEGF expression; increases the number of fibroblasts and T cells, whereas it reduces that of neutrophils; and increases the number of M2 vs. M1 macrophages. Fittingly, ICOS-Fc enhanced M2 macrophage migration, while it hampered that of M1 macrophages. ICOS(−/−) and ICOSL(−/−) KO, and NSG mice showed delayed wound healing, and treatment with ICOS-Fc improved wound closure in ICOS(−/−) and NSG mice. Conclusion: These data show that the ICOS/ICOSL network cooperates in tissue repair, and that triggering of ICOSL by ICOS-Fc improves cutaneous wound healing by increasing angiogenesis and recruitment of reparative macrophages.
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spelling pubmed-92669422022-07-09 ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo Stoppa, Ian Gigliotti, Casimiro Luca Clemente, Nausicaa Pantham, Deepika Dianzani, Chiara Monge, Chiara Puricelli, Chiara Rolla, Roberta Sutti, Salvatore Renò, Filippo Boldorini, Renzo Boggio, Elena Dianzani, Umberto Int J Mol Sci Article Background: ICOS and its ligand ICOSL are immune receptors whose interaction triggers bidirectional signals that modulate the immune response and tissue repair. Aim: The aim of this study was to assess the in vivo effects of ICOSL triggering by ICOS-Fc, a recombinant soluble form of ICOS, on skin wound healing. Methods: The effect of human ICOS-Fc on wound healing was assessed, in vitro, and, in vivo, by skin wound healing assay using ICOS(−/−) and ICOSL(−/−) knockout (KO) mice and NOD-SCID-IL2R null (NSG) mice. Results: We show that, in wild type mice, treatment with ICOS-Fc improves wound healing, promotes angiogenesis, preceded by upregulation of IL-6 and VEGF expression; increases the number of fibroblasts and T cells, whereas it reduces that of neutrophils; and increases the number of M2 vs. M1 macrophages. Fittingly, ICOS-Fc enhanced M2 macrophage migration, while it hampered that of M1 macrophages. ICOS(−/−) and ICOSL(−/−) KO, and NSG mice showed delayed wound healing, and treatment with ICOS-Fc improved wound closure in ICOS(−/−) and NSG mice. Conclusion: These data show that the ICOS/ICOSL network cooperates in tissue repair, and that triggering of ICOSL by ICOS-Fc improves cutaneous wound healing by increasing angiogenesis and recruitment of reparative macrophages. MDPI 2022-07-01 /pmc/articles/PMC9266942/ /pubmed/35806368 http://dx.doi.org/10.3390/ijms23137363 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Stoppa, Ian
Gigliotti, Casimiro Luca
Clemente, Nausicaa
Pantham, Deepika
Dianzani, Chiara
Monge, Chiara
Puricelli, Chiara
Rolla, Roberta
Sutti, Salvatore
Renò, Filippo
Boldorini, Renzo
Boggio, Elena
Dianzani, Umberto
ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo
title ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo
title_full ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo
title_fullStr ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo
title_full_unstemmed ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo
title_short ICOSL Stimulation by ICOS-Fc Accelerates Cutaneous Wound Healing In Vivo
title_sort icosl stimulation by icos-fc accelerates cutaneous wound healing in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266942/
https://www.ncbi.nlm.nih.gov/pubmed/35806368
http://dx.doi.org/10.3390/ijms23137363
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