Heterogeneity of glia in the retina and optic nerve of birds and mammals.
We have recently described a novel type of glial cell that is scattered across the inner layers of the avian retina [1]. These cells are stimulated by insulin-like growth factor 1 (IGF1) to proliferate, migrate distally into the retina, and up-regulate the nestin-related intermediate filament transi...
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doaj-1e77352a9b714c189405057a016603ce2020-11-24T20:49:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-06-0156e1077410.1371/journal.pone.0010774Heterogeneity of glia in the retina and optic nerve of birds and mammals.Andy J FischerChristopher ZelinkaMelissa A ScottWe have recently described a novel type of glial cell that is scattered across the inner layers of the avian retina [1]. These cells are stimulated by insulin-like growth factor 1 (IGF1) to proliferate, migrate distally into the retina, and up-regulate the nestin-related intermediate filament transition. These changes in glial activity correspond with increased susceptibility of neurons to excitotoxic damage. This novel cell-type has been termed the Non-astrocytic Inner Retinal Glia-like (NIRG) cells. The purpose of the study was to investigate whether the retinas of non-avian species contain cells that resemble NIRG cells. We assayed for NIRG cells by probing for the expression of Sox2, Sox9, Nkx2.2, vimentin and nestin. NIRG cells were distinguished from astrocytes by a lack of expression for Glial Fibrilliary Acidic Protein (GFAP). We examined the retinas of adult mice, guinea pigs, dogs and monkeys (Macaca fasicularis). In the mouse retina and optic nerve head, we identified numerous astrocytes that expressed GFAP, S100beta, Sox2 and Sox9; however, we found no evidence for NIRG-like cells that were positive for Nkx2.2, nestin, and negative for GFAP. In the guinea pig retina, we did not find astrocytes or NIRG cells in the retina, whereas we identified astrocytes in the optic nerve. In the eyes of dogs and monkeys, we found astrocytes and NIRG-like cells scattered across inner layers of the retina and within the optic nerve. We conclude that NIRG-like cells are present in the retinas of canines and non-human primates, whereas the retinas of mice and guinea pigs do not contain NIRG cells.http://europepmc.org/articles/PMC2887354?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Andy J Fischer Christopher Zelinka Melissa A Scott |
spellingShingle |
Andy J Fischer Christopher Zelinka Melissa A Scott Heterogeneity of glia in the retina and optic nerve of birds and mammals. PLoS ONE |
author_facet |
Andy J Fischer Christopher Zelinka Melissa A Scott |
author_sort |
Andy J Fischer |
title |
Heterogeneity of glia in the retina and optic nerve of birds and mammals. |
title_short |
Heterogeneity of glia in the retina and optic nerve of birds and mammals. |
title_full |
Heterogeneity of glia in the retina and optic nerve of birds and mammals. |
title_fullStr |
Heterogeneity of glia in the retina and optic nerve of birds and mammals. |
title_full_unstemmed |
Heterogeneity of glia in the retina and optic nerve of birds and mammals. |
title_sort |
heterogeneity of glia in the retina and optic nerve of birds and mammals. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2010-06-01 |
description |
We have recently described a novel type of glial cell that is scattered across the inner layers of the avian retina [1]. These cells are stimulated by insulin-like growth factor 1 (IGF1) to proliferate, migrate distally into the retina, and up-regulate the nestin-related intermediate filament transition. These changes in glial activity correspond with increased susceptibility of neurons to excitotoxic damage. This novel cell-type has been termed the Non-astrocytic Inner Retinal Glia-like (NIRG) cells. The purpose of the study was to investigate whether the retinas of non-avian species contain cells that resemble NIRG cells. We assayed for NIRG cells by probing for the expression of Sox2, Sox9, Nkx2.2, vimentin and nestin. NIRG cells were distinguished from astrocytes by a lack of expression for Glial Fibrilliary Acidic Protein (GFAP). We examined the retinas of adult mice, guinea pigs, dogs and monkeys (Macaca fasicularis). In the mouse retina and optic nerve head, we identified numerous astrocytes that expressed GFAP, S100beta, Sox2 and Sox9; however, we found no evidence for NIRG-like cells that were positive for Nkx2.2, nestin, and negative for GFAP. In the guinea pig retina, we did not find astrocytes or NIRG cells in the retina, whereas we identified astrocytes in the optic nerve. In the eyes of dogs and monkeys, we found astrocytes and NIRG-like cells scattered across inner layers of the retina and within the optic nerve. We conclude that NIRG-like cells are present in the retinas of canines and non-human primates, whereas the retinas of mice and guinea pigs do not contain NIRG cells. |
url |
http://europepmc.org/articles/PMC2887354?pdf=render |
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