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Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis

Enteric glial cells (EGC) actively mediate acute and chronic inflammation in the gut; EGC proliferate and release neurotrophins, growth factors, and pro-inflammatory cytokines which, in turn, may amplify the immune response, representing a very important link between the nervous and immune systems i...

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Autores principales: De Filippis, Daniele, Esposito, Giuseppe, Cirillo, Carla, Cipriano, Mariateresa, De Winter, Benedicte Y., Scuderi, Caterina, Sarnelli, Giovanni, Cuomo, Rosario, Steardo, Luca, De Man, Joris G., Iuvone, Teresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3232190/
https://www.ncbi.nlm.nih.gov/pubmed/22163000
http://dx.doi.org/10.1371/journal.pone.0028159
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author De Filippis, Daniele
Esposito, Giuseppe
Cirillo, Carla
Cipriano, Mariateresa
De Winter, Benedicte Y.
Scuderi, Caterina
Sarnelli, Giovanni
Cuomo, Rosario
Steardo, Luca
De Man, Joris G.
Iuvone, Teresa
author_facet De Filippis, Daniele
Esposito, Giuseppe
Cirillo, Carla
Cipriano, Mariateresa
De Winter, Benedicte Y.
Scuderi, Caterina
Sarnelli, Giovanni
Cuomo, Rosario
Steardo, Luca
De Man, Joris G.
Iuvone, Teresa
author_sort De Filippis, Daniele
collection PubMed
description Enteric glial cells (EGC) actively mediate acute and chronic inflammation in the gut; EGC proliferate and release neurotrophins, growth factors, and pro-inflammatory cytokines which, in turn, may amplify the immune response, representing a very important link between the nervous and immune systems in the intestine. Cannabidiol (CBD) is an interesting compound because of its ability to control reactive gliosis in the CNS, without any unwanted psychotropic effects. Therefore the rationale of our study was to investigate the effect of CBD on intestinal biopsies from patients with ulcerative colitis (UC) and from intestinal segments of mice with LPS-induced intestinal inflammation. CBD markedly counteracted reactive enteric gliosis in LPS-mice trough the massive reduction of astroglial signalling neurotrophin S100B. Histological, biochemical and immunohistochemical data demonstrated that S100B decrease was associated with a considerable decrease in mast cell and macrophages in the intestine of LPS-treated mice after CBD treatment. Moreover the treatment of LPS-mice with CBD reduced TNF-α expression and the presence of cleaved caspase-3. Similar results were obtained in ex vivo cultured human derived colonic biopsies. In biopsies of UC patients, both during active inflammation and in remission stimulated with LPS+INF-γ, an increased glial cell activation and intestinal damage were evidenced. CBD reduced the expression of S100B and iNOS proteins in the human biopsies confirming its well documented effect in septic mice. The activity of CBD is, at least partly, mediated via the selective PPAR-gamma receptor pathway. CBD targets enteric reactive gliosis, counteracts the inflammatory environment induced by LPS in mice and in human colonic cultures derived from UC patients. These actions lead to a reduction of intestinal damage mediated by PPARgamma receptor pathway. Our results therefore indicate that CBD indeed unravels a new therapeutic strategy to treat inflammatory bowel diseases.
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spelling pubmed-32321902011-12-09 Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis De Filippis, Daniele Esposito, Giuseppe Cirillo, Carla Cipriano, Mariateresa De Winter, Benedicte Y. Scuderi, Caterina Sarnelli, Giovanni Cuomo, Rosario Steardo, Luca De Man, Joris G. Iuvone, Teresa PLoS One Research Article Enteric glial cells (EGC) actively mediate acute and chronic inflammation in the gut; EGC proliferate and release neurotrophins, growth factors, and pro-inflammatory cytokines which, in turn, may amplify the immune response, representing a very important link between the nervous and immune systems in the intestine. Cannabidiol (CBD) is an interesting compound because of its ability to control reactive gliosis in the CNS, without any unwanted psychotropic effects. Therefore the rationale of our study was to investigate the effect of CBD on intestinal biopsies from patients with ulcerative colitis (UC) and from intestinal segments of mice with LPS-induced intestinal inflammation. CBD markedly counteracted reactive enteric gliosis in LPS-mice trough the massive reduction of astroglial signalling neurotrophin S100B. Histological, biochemical and immunohistochemical data demonstrated that S100B decrease was associated with a considerable decrease in mast cell and macrophages in the intestine of LPS-treated mice after CBD treatment. Moreover the treatment of LPS-mice with CBD reduced TNF-α expression and the presence of cleaved caspase-3. Similar results were obtained in ex vivo cultured human derived colonic biopsies. In biopsies of UC patients, both during active inflammation and in remission stimulated with LPS+INF-γ, an increased glial cell activation and intestinal damage were evidenced. CBD reduced the expression of S100B and iNOS proteins in the human biopsies confirming its well documented effect in septic mice. The activity of CBD is, at least partly, mediated via the selective PPAR-gamma receptor pathway. CBD targets enteric reactive gliosis, counteracts the inflammatory environment induced by LPS in mice and in human colonic cultures derived from UC patients. These actions lead to a reduction of intestinal damage mediated by PPARgamma receptor pathway. Our results therefore indicate that CBD indeed unravels a new therapeutic strategy to treat inflammatory bowel diseases. Public Library of Science 2011-12-06 /pmc/articles/PMC3232190/ /pubmed/22163000 http://dx.doi.org/10.1371/journal.pone.0028159 Text en De Filippis et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
De Filippis, Daniele
Esposito, Giuseppe
Cirillo, Carla
Cipriano, Mariateresa
De Winter, Benedicte Y.
Scuderi, Caterina
Sarnelli, Giovanni
Cuomo, Rosario
Steardo, Luca
De Man, Joris G.
Iuvone, Teresa
Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis
title Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis
title_full Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis
title_fullStr Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis
title_full_unstemmed Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis
title_short Cannabidiol Reduces Intestinal Inflammation through the Control of Neuroimmune Axis
title_sort cannabidiol reduces intestinal inflammation through the control of neuroimmune axis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3232190/
https://www.ncbi.nlm.nih.gov/pubmed/22163000
http://dx.doi.org/10.1371/journal.pone.0028159
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