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Cover ArticleArticles, Systems/Circuits

Characteristic Patterns of Dendritic Remodeling in Early-Stage Glaucoma: Evidence from Genetically Identified Retinal Ganglion Cell Types

Rana N. El-Danaf and Andrew D. Huberman
Journal of Neuroscience 11 February 2015, 35 (6) 2329-2343; https://doi.org/10.1523/JNEUROSCI.1419-14.2015
Rana N. El-Danaf
1Department of Neurosciences,
2Neurobiology Section in the Division of Biological Sciences, and
3Department of Ophthalmology, University of California, San Diego, La Jolla, California 92093, and
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Andrew D. Huberman
1Department of Neurosciences,
2Neurobiology Section in the Division of Biological Sciences, and
3Department of Ophthalmology, University of California, San Diego, La Jolla, California 92093, and
4Salk Institute for Biological Studies, La Jolla, California 92093
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Abstract

Retinal ganglion cell (RGC) loss is a hallmark of glaucoma and the second leading cause of blindness worldwide. The type and timing of cellular changes leading to RGC loss in glaucoma remain incompletely understood, including whether specific RGC subtypes are preferentially impacted at early stages of this disease. Here we applied the microbead occlusion model of glaucoma to different transgenic mouse lines, each expressing green fluorescent protein in 1–2 specific RGC subtypes. Targeted filling, reconstruction, and subsequent comparison of the genetically identified RGCs in control and bead-injected eyes revealed that some subtypes undergo significant dendritic rearrangements as early as 7 d following induction of elevated intraocular pressure (IOP). By comparing specific On-type, On-Off-type and Off-type RGCs, we found that RGCs that target the majority of their dendritic arbors to the scleral half or “Off” sublamina of the inner plexiform layer (IPL) undergo the greatest changes, whereas RGCs with the majority of their dendrites in the On sublamina did not alter their structure at this time point. Moreover, M1 intrinsically photosensitive RGCs, which functionally are On RGCs but structurally stratify their dendrites in the Off sublamina of the IPL, also underwent significant changes in dendritic structure 1 week after elevated IOP. Thus, our findings reveal that certain RGC subtypes manifest significant changes in dendritic structure after very brief exposure to elevated IOP. The observation that RGCs stratifying most of their dendrites in the Off sublamina are first to alter their structure may inform the development of new strategies to detect, monitor, and treat glaucoma in humans.

  • dendrites
  • glaucoma
  • retinal ganglion cells
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The Journal of Neuroscience: 35 (6)
Journal of Neuroscience
Vol. 35, Issue 6
11 Feb 2015
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Characteristic Patterns of Dendritic Remodeling in Early-Stage Glaucoma: Evidence from Genetically Identified Retinal Ganglion Cell Types
Rana N. El-Danaf, Andrew D. Huberman
Journal of Neuroscience 11 February 2015, 35 (6) 2329-2343; DOI: 10.1523/JNEUROSCI.1419-14.2015

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Characteristic Patterns of Dendritic Remodeling in Early-Stage Glaucoma: Evidence from Genetically Identified Retinal Ganglion Cell Types
Rana N. El-Danaf, Andrew D. Huberman
Journal of Neuroscience 11 February 2015, 35 (6) 2329-2343; DOI: 10.1523/JNEUROSCI.1419-14.2015
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Keywords

  • dendrites
  • glaucoma
  • retinal ganglion cells

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