Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.

The recruitment of macrophages accompanies almost every pathogenic state of the retina, and their excessive activation in the subretinal space is thought to contribute to the progression of diseases including age-related macular degeneration. Previously, we have shown that macrophages aggregate in t...

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Main Authors: Haihan Jiao, Riccardo Natoli, Krisztina Valter, Jan M Provis, Matt Rutar
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4667999?pdf=render
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spelling doaj-623c8c89a2eb47b68881f6d883107daf2020-11-25T01:53:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011012e014395210.1371/journal.pone.0143952Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.Haihan JiaoRiccardo NatoliKrisztina ValterJan M ProvisMatt RutarThe recruitment of macrophages accompanies almost every pathogenic state of the retina, and their excessive activation in the subretinal space is thought to contribute to the progression of diseases including age-related macular degeneration. Previously, we have shown that macrophages aggregate in the outer retina following damage elicited by photo-oxidative stress, and that inhibition of their recruitment reduces photoreceptor death. Here, we look for functional insight into macrophage activity in this model through the spatiotemporal interplay of macrophage polarisation over the course of degeneration.Rats were exposed to 1000 lux light damage (LD) for 24 hrs, with some left to recover for 3 and 7 days post-exposure. Expression and localisation of M1- and M2- macrophage markers was investigated in light-damaged retinas using qPCR, ELISA, flow cytometry, and immunohistochemistry.Expression of M1- (Ccl3, Il-6, Il-12, Il-1β, TNFα) and M2- (CD206, Arg1, Igf1, Lyve1, Clec7a) related markers followed discrete profiles following light damage; up-regulation of M1 genes peaked at the early phase of cell death, while M2 genes generally exhibited more prolonged increases during the chronic phase. Moreover, Il-1β and CD206 labelled accumulations of microglia/macrophages which differed in their morphological, temporal, and spatial characteristics following light damage.The data illustrate a dynamic shift in macrophage polarisation following light damage through a broad swathe of M1 and M2 markers. Pro-inflammatory M1 activation appears to dominate the early phase of degeneration while M2 responses appear to more heavily mark the chronic post-exposure period. While M1/M2 polarisation represents two extremes amongst a spectrum of macrophage activity, knowledge of their predominance offers insight into functional consequences of macrophage activity over the course of damage, which may inform the spatiotemporal employment of therapeutics in retinal disease.http://europepmc.org/articles/PMC4667999?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Haihan Jiao
Riccardo Natoli
Krisztina Valter
Jan M Provis
Matt Rutar
spellingShingle Haihan Jiao
Riccardo Natoli
Krisztina Valter
Jan M Provis
Matt Rutar
Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.
PLoS ONE
author_facet Haihan Jiao
Riccardo Natoli
Krisztina Valter
Jan M Provis
Matt Rutar
author_sort Haihan Jiao
title Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.
title_short Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.
title_full Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.
title_fullStr Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.
title_full_unstemmed Spatiotemporal Cadence of Macrophage Polarisation in a Model of Light-Induced Retinal Degeneration.
title_sort spatiotemporal cadence of macrophage polarisation in a model of light-induced retinal degeneration.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description The recruitment of macrophages accompanies almost every pathogenic state of the retina, and their excessive activation in the subretinal space is thought to contribute to the progression of diseases including age-related macular degeneration. Previously, we have shown that macrophages aggregate in the outer retina following damage elicited by photo-oxidative stress, and that inhibition of their recruitment reduces photoreceptor death. Here, we look for functional insight into macrophage activity in this model through the spatiotemporal interplay of macrophage polarisation over the course of degeneration.Rats were exposed to 1000 lux light damage (LD) for 24 hrs, with some left to recover for 3 and 7 days post-exposure. Expression and localisation of M1- and M2- macrophage markers was investigated in light-damaged retinas using qPCR, ELISA, flow cytometry, and immunohistochemistry.Expression of M1- (Ccl3, Il-6, Il-12, Il-1β, TNFα) and M2- (CD206, Arg1, Igf1, Lyve1, Clec7a) related markers followed discrete profiles following light damage; up-regulation of M1 genes peaked at the early phase of cell death, while M2 genes generally exhibited more prolonged increases during the chronic phase. Moreover, Il-1β and CD206 labelled accumulations of microglia/macrophages which differed in their morphological, temporal, and spatial characteristics following light damage.The data illustrate a dynamic shift in macrophage polarisation following light damage through a broad swathe of M1 and M2 markers. Pro-inflammatory M1 activation appears to dominate the early phase of degeneration while M2 responses appear to more heavily mark the chronic post-exposure period. While M1/M2 polarisation represents two extremes amongst a spectrum of macrophage activity, knowledge of their predominance offers insight into functional consequences of macrophage activity over the course of damage, which may inform the spatiotemporal employment of therapeutics in retinal disease.
url http://europepmc.org/articles/PMC4667999?pdf=render
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