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Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo

The regulated differentiation of macrophages (mφs) and their subsequent activation into proinflammatory or prohealing subtypes is critical for efficient wound healing. Chronic wounds such as diabetic (db) ulcers are associated with dysregulation of macrophage function. Whereas non-db mφs polarize to...

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Autores principales: Al Sadoun, Hadeel, Burgess, Matthew, Hentges, Kathryn E., Mace, Kimberly A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4947829/
https://www.ncbi.nlm.nih.gov/pubmed/27342843
http://dx.doi.org/10.4049/jimmunol.1501944
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author Al Sadoun, Hadeel
Burgess, Matthew
Hentges, Kathryn E.
Mace, Kimberly A.
author_facet Al Sadoun, Hadeel
Burgess, Matthew
Hentges, Kathryn E.
Mace, Kimberly A.
author_sort Al Sadoun, Hadeel
collection PubMed
description The regulated differentiation of macrophages (mφs) and their subsequent activation into proinflammatory or prohealing subtypes is critical for efficient wound healing. Chronic wounds such as diabetic (db) ulcers are associated with dysregulation of macrophage function. Whereas non-db mφs polarize to an M2-like, prohealing phenotype during the late stages of healing, db-derived mφs continue to display an M1-like, proinflammatory, or a mixed M1-like/M2-like phenotype. We have previously shown that sustained expression of Hoxa3 reduces the excessive number of leukocytes within the db wound; however, the effect of Hoxa3 on mφ polarization was unknown. In this study, we show that Hoxa3 protein transduction of mφs in vitro enhances macrophage maturation, inhibits M1 polarization, and promotes M2 polarization, in part via regulation of Pu.1/Spi1 and Stat6. Sustained expression of Hoxa3 in vivo in db wounds reduces the number of Nos2(+) (M1-like) mφs, increases the number of Arg1(+) and VEGF(+) (M2-like) mφs, and accelerates healing in a DNA-binding independent manner. Our findings suggest a role for Hox protein activity in promoting M1-to-M2-like phenotypic switching via interactions with myeloid transcription factors and provide insight into mechanisms regulating this process in db wound healing.
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spelling pubmed-49478292016-07-19 Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo Al Sadoun, Hadeel Burgess, Matthew Hentges, Kathryn E. Mace, Kimberly A. J Immunol Innate Immunity and Inflammation The regulated differentiation of macrophages (mφs) and their subsequent activation into proinflammatory or prohealing subtypes is critical for efficient wound healing. Chronic wounds such as diabetic (db) ulcers are associated with dysregulation of macrophage function. Whereas non-db mφs polarize to an M2-like, prohealing phenotype during the late stages of healing, db-derived mφs continue to display an M1-like, proinflammatory, or a mixed M1-like/M2-like phenotype. We have previously shown that sustained expression of Hoxa3 reduces the excessive number of leukocytes within the db wound; however, the effect of Hoxa3 on mφ polarization was unknown. In this study, we show that Hoxa3 protein transduction of mφs in vitro enhances macrophage maturation, inhibits M1 polarization, and promotes M2 polarization, in part via regulation of Pu.1/Spi1 and Stat6. Sustained expression of Hoxa3 in vivo in db wounds reduces the number of Nos2(+) (M1-like) mφs, increases the number of Arg1(+) and VEGF(+) (M2-like) mφs, and accelerates healing in a DNA-binding independent manner. Our findings suggest a role for Hox protein activity in promoting M1-to-M2-like phenotypic switching via interactions with myeloid transcription factors and provide insight into mechanisms regulating this process in db wound healing. AAI 2016-08-01 2016-06-24 /pmc/articles/PMC4947829/ /pubmed/27342843 http://dx.doi.org/10.4049/jimmunol.1501944 Text en Copyright © 2016 The Authors This is an open-access article distributed under the terms of the CC-BY 3.0 Unported license.
spellingShingle Innate Immunity and Inflammation
Al Sadoun, Hadeel
Burgess, Matthew
Hentges, Kathryn E.
Mace, Kimberly A.
Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo
title Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo
title_full Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo
title_fullStr Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo
title_full_unstemmed Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo
title_short Enforced Expression of Hoxa3 Inhibits Classical and Promotes Alternative Activation of Macrophages In Vitro and In Vivo
title_sort enforced expression of hoxa3 inhibits classical and promotes alternative activation of macrophages in vitro and in vivo
topic Innate Immunity and Inflammation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4947829/
https://www.ncbi.nlm.nih.gov/pubmed/27342843
http://dx.doi.org/10.4049/jimmunol.1501944
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