Cargando…

Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis

Monocytes and macrophages are key drivers in the pathogenesis of inflammatory diseases. Epigenetic targets have been shown to control the transcriptional profile and phenotype of these cells. Since histone deacetylase protein inhibitors demonstrate profound anti-inflammatory activity, we wanted to t...

Descripción completa

Detalles Bibliográficos
Autores principales: Luque-Martin, Rosario, Van den Bossche, Jan, Furze, Rebecca C., Neele, Annette E., van der Velden, Saskia, Gijbels, Marion J.J., van Roomen, Cindy P.P.A., Bernard, Sharon G., de Jonge, Wouter J., Rioja, Inmaculada, Prinjha, Rab K., Lewis, Huw D., Mander, Palwinder K., de Winther, Menno P.J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6830127/
https://www.ncbi.nlm.nih.gov/pubmed/31736752
http://dx.doi.org/10.3389/fphar.2019.01242
_version_ 1783465715558252544
author Luque-Martin, Rosario
Van den Bossche, Jan
Furze, Rebecca C.
Neele, Annette E.
van der Velden, Saskia
Gijbels, Marion J.J.
van Roomen, Cindy P.P.A.
Bernard, Sharon G.
de Jonge, Wouter J.
Rioja, Inmaculada
Prinjha, Rab K.
Lewis, Huw D.
Mander, Palwinder K.
de Winther, Menno P.J.
author_facet Luque-Martin, Rosario
Van den Bossche, Jan
Furze, Rebecca C.
Neele, Annette E.
van der Velden, Saskia
Gijbels, Marion J.J.
van Roomen, Cindy P.P.A.
Bernard, Sharon G.
de Jonge, Wouter J.
Rioja, Inmaculada
Prinjha, Rab K.
Lewis, Huw D.
Mander, Palwinder K.
de Winther, Menno P.J.
author_sort Luque-Martin, Rosario
collection PubMed
description Monocytes and macrophages are key drivers in the pathogenesis of inflammatory diseases. Epigenetic targets have been shown to control the transcriptional profile and phenotype of these cells. Since histone deacetylase protein inhibitors demonstrate profound anti-inflammatory activity, we wanted to test whether HDAC inhibition within monocytes and macrophages could be applied to suppress inflammation in vivo. ESM technology conjugates an esterase-sensitive motif (ESM) onto small molecules to allow targeting of cells that express carboxylesterase 1 (CES1), such as mononuclear myeloid cells. This study utilized an ESM-HDAC inhibitor to target monocytes and macrophages in mice in both an acute response model and an atherosclerosis model. We demonstrate that the molecule blocks the maturation of peritoneal macrophages and inhibits pro-inflammatory cytokine production in both models but to a lesser extent in the atherosclerosis model. Despite regulating the inflammatory response, ESM-HDAC528 did not significantly affect plaque size or phenotype, although histological classification of the plaques demonstrated a significant shift to a less severe phenotype. We hereby show that HDAC inhibition in myeloid cells impairs the maturation and activation of peritoneal macrophages but shows limited efficacy in a model of atherosclerosis.
format Online
Article
Text
id pubmed-6830127
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-68301272019-11-15 Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis Luque-Martin, Rosario Van den Bossche, Jan Furze, Rebecca C. Neele, Annette E. van der Velden, Saskia Gijbels, Marion J.J. van Roomen, Cindy P.P.A. Bernard, Sharon G. de Jonge, Wouter J. Rioja, Inmaculada Prinjha, Rab K. Lewis, Huw D. Mander, Palwinder K. de Winther, Menno P.J. Front Pharmacol Pharmacology Monocytes and macrophages are key drivers in the pathogenesis of inflammatory diseases. Epigenetic targets have been shown to control the transcriptional profile and phenotype of these cells. Since histone deacetylase protein inhibitors demonstrate profound anti-inflammatory activity, we wanted to test whether HDAC inhibition within monocytes and macrophages could be applied to suppress inflammation in vivo. ESM technology conjugates an esterase-sensitive motif (ESM) onto small molecules to allow targeting of cells that express carboxylesterase 1 (CES1), such as mononuclear myeloid cells. This study utilized an ESM-HDAC inhibitor to target monocytes and macrophages in mice in both an acute response model and an atherosclerosis model. We demonstrate that the molecule blocks the maturation of peritoneal macrophages and inhibits pro-inflammatory cytokine production in both models but to a lesser extent in the atherosclerosis model. Despite regulating the inflammatory response, ESM-HDAC528 did not significantly affect plaque size or phenotype, although histological classification of the plaques demonstrated a significant shift to a less severe phenotype. We hereby show that HDAC inhibition in myeloid cells impairs the maturation and activation of peritoneal macrophages but shows limited efficacy in a model of atherosclerosis. Frontiers Media S.A. 2019-10-29 /pmc/articles/PMC6830127/ /pubmed/31736752 http://dx.doi.org/10.3389/fphar.2019.01242 Text en Copyright © 2019 Luque-Martin, Van den Bossche, Furze, Neele, van der Velden, Gijbels, van Roomen, Bernard, de Jonge, Rioja, Prinjha, Lewis, Mander and de Winther http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Luque-Martin, Rosario
Van den Bossche, Jan
Furze, Rebecca C.
Neele, Annette E.
van der Velden, Saskia
Gijbels, Marion J.J.
van Roomen, Cindy P.P.A.
Bernard, Sharon G.
de Jonge, Wouter J.
Rioja, Inmaculada
Prinjha, Rab K.
Lewis, Huw D.
Mander, Palwinder K.
de Winther, Menno P.J.
Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis
title Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis
title_full Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis
title_fullStr Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis
title_full_unstemmed Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis
title_short Targeting Histone Deacetylases in Myeloid Cells Inhibits Their Maturation and Inflammatory Function With Limited Effects on Atherosclerosis
title_sort targeting histone deacetylases in myeloid cells inhibits their maturation and inflammatory function with limited effects on atherosclerosis
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6830127/
https://www.ncbi.nlm.nih.gov/pubmed/31736752
http://dx.doi.org/10.3389/fphar.2019.01242
work_keys_str_mv AT luquemartinrosario targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT vandenbosschejan targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT furzerebeccac targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT neeleannettee targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT vanderveldensaskia targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT gijbelsmarionjj targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT vanroomencindyppa targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT bernardsharong targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT dejongewouterj targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT riojainmaculada targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT prinjharabk targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT lewishuwd targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT manderpalwinderk targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis
AT dewinthermennopj targetinghistonedeacetylasesinmyeloidcellsinhibitstheirmaturationandinflammatoryfunctionwithlimitedeffectsonatherosclerosis