Purpose Optic nerve head astrocytes, a subtype of white-matter astrocytes, become reactive early in the course of glaucoma. It was shown recently that in the DBA/2J mouse model of inherited glaucoma optic nerve astrocytes extend new longitudinal processes into the axon bundles before ganglion cell loss becomes apparent. The present study aims at testing whether this behavior of astrocytes is typical of early glaucomatous damage. Methods: Mice expressing green fluorescent protein in individual astrocytes were used to evaluate the early response of astrocytes in the glial lamina of the optic nerve head after increasing the IOP using the microbead occlusion method. Tissue sections from the glial lamina were imaged consecutively by confocal and...
Increased intraocular pressure (IOP) damages the retinal ganglion cell axons as they pass through th...
Increased intraocular pressure (IOP) is recognised as the principal risk factor for the development ...
Studies on the rat optic nerve in the past 5 years have produced two surprises. First, they demonstr...
PurposeTo delineate responses of optic nerve head astrocytes to sustained intraocular pressure (IOP)...
Abstract Background The optic nerve is an important tissue in glaucoma and the unmyelinated nerve he...
Abstract Astroyctes serve myriad functions but are especially critical in white matter tracts, where...
Here, we use a mouse model (DBA/2J) to readdress the location of insult(s) to retinal ganglion cells...
Optic nerve head (ONH) astrocytes have been proposed to play both protective and deleterious roles i...
Retinal ganglion cell (RGC) loss in glaucoma is sectorial in nature and preceded by deficits in axon...
Reactive gliosis is a complex process that involves changes in gene expression and morphological rem...
<div><p>Reactive gliosis is a complex process that involves changes in gene expression and morpholog...
Reactive remodeling of optic nerve head astrocytes is consistently observed in glaucoma and other op...
We have shown previously that the A2B5 monoclonal antibody distinguishes two types of glial fibrilla...
Although retinal neurodegenerative conditions such as age-related macular degeneration, glaucoma, di...
Microglia serve key homeostatic roles, and respond to neuronal perturbation and decline with a high ...
Increased intraocular pressure (IOP) damages the retinal ganglion cell axons as they pass through th...
Increased intraocular pressure (IOP) is recognised as the principal risk factor for the development ...
Studies on the rat optic nerve in the past 5 years have produced two surprises. First, they demonstr...
PurposeTo delineate responses of optic nerve head astrocytes to sustained intraocular pressure (IOP)...
Abstract Background The optic nerve is an important tissue in glaucoma and the unmyelinated nerve he...
Abstract Astroyctes serve myriad functions but are especially critical in white matter tracts, where...
Here, we use a mouse model (DBA/2J) to readdress the location of insult(s) to retinal ganglion cells...
Optic nerve head (ONH) astrocytes have been proposed to play both protective and deleterious roles i...
Retinal ganglion cell (RGC) loss in glaucoma is sectorial in nature and preceded by deficits in axon...
Reactive gliosis is a complex process that involves changes in gene expression and morphological rem...
<div><p>Reactive gliosis is a complex process that involves changes in gene expression and morpholog...
Reactive remodeling of optic nerve head astrocytes is consistently observed in glaucoma and other op...
We have shown previously that the A2B5 monoclonal antibody distinguishes two types of glial fibrilla...
Although retinal neurodegenerative conditions such as age-related macular degeneration, glaucoma, di...
Microglia serve key homeostatic roles, and respond to neuronal perturbation and decline with a high ...
Increased intraocular pressure (IOP) damages the retinal ganglion cell axons as they pass through th...
Increased intraocular pressure (IOP) is recognised as the principal risk factor for the development ...
Studies on the rat optic nerve in the past 5 years have produced two surprises. First, they demonstr...