Synaptic remodeling of neuronal circuits in early retinal degeneration

Photoreceptor degenerations are a major cause of blindness and among the most common forms of neurodegeneration in humans. Studies of mouse models revealed that synaptic dysfunction often precedes photoreceptor degeneration, and that abnormal synaptic input from photoreceptors to bipolar cells cause...

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Main Authors: Florentina eSoto, Daniel eKerschensteiner
Format: Article
Language:English
Published: Frontiers Media S.A. 2015-10-01
Series:Frontiers in Cellular Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fncel.2015.00395/full
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spelling doaj-7e6b5574faad441a85c231b5c930f2282020-11-24T22:35:55ZengFrontiers Media S.A.Frontiers in Cellular Neuroscience1662-51022015-10-01910.3389/fncel.2015.00395165241Synaptic remodeling of neuronal circuits in early retinal degenerationFlorentina eSoto0Daniel eKerschensteiner1Washington University in St. LouisWashington University in St. LouisPhotoreceptor degenerations are a major cause of blindness and among the most common forms of neurodegeneration in humans. Studies of mouse models revealed that synaptic dysfunction often precedes photoreceptor degeneration, and that abnormal synaptic input from photoreceptors to bipolar cells causes circuits in the inner retina to become hyperactive. Here, we provide a brief overview of frequently used mouse models of photoreceptor degenerations. We then discuss insights into circuit remodeling triggered by early synaptic dysfunction in the outer and hyperactivity in the inner retina. We discuss these insights in the context of other experimental manipulations of synaptic function and activity. Knowledge of the plasticity and early remodeling of retinal circuits will be critical for the design of successful vision rescue strategies.http://journal.frontiersin.org/Journal/10.3389/fncel.2015.00395/fullMosaicismRetinadevelopmental plasticitylaminationcircuit remodeling
collection DOAJ
language English
format Article
sources DOAJ
author Florentina eSoto
Daniel eKerschensteiner
spellingShingle Florentina eSoto
Daniel eKerschensteiner
Synaptic remodeling of neuronal circuits in early retinal degeneration
Frontiers in Cellular Neuroscience
Mosaicism
Retina
developmental plasticity
lamination
circuit remodeling
author_facet Florentina eSoto
Daniel eKerschensteiner
author_sort Florentina eSoto
title Synaptic remodeling of neuronal circuits in early retinal degeneration
title_short Synaptic remodeling of neuronal circuits in early retinal degeneration
title_full Synaptic remodeling of neuronal circuits in early retinal degeneration
title_fullStr Synaptic remodeling of neuronal circuits in early retinal degeneration
title_full_unstemmed Synaptic remodeling of neuronal circuits in early retinal degeneration
title_sort synaptic remodeling of neuronal circuits in early retinal degeneration
publisher Frontiers Media S.A.
series Frontiers in Cellular Neuroscience
issn 1662-5102
publishDate 2015-10-01
description Photoreceptor degenerations are a major cause of blindness and among the most common forms of neurodegeneration in humans. Studies of mouse models revealed that synaptic dysfunction often precedes photoreceptor degeneration, and that abnormal synaptic input from photoreceptors to bipolar cells causes circuits in the inner retina to become hyperactive. Here, we provide a brief overview of frequently used mouse models of photoreceptor degenerations. We then discuss insights into circuit remodeling triggered by early synaptic dysfunction in the outer and hyperactivity in the inner retina. We discuss these insights in the context of other experimental manipulations of synaptic function and activity. Knowledge of the plasticity and early remodeling of retinal circuits will be critical for the design of successful vision rescue strategies.
topic Mosaicism
Retina
developmental plasticity
lamination
circuit remodeling
url http://journal.frontiersin.org/Journal/10.3389/fncel.2015.00395/full
work_keys_str_mv AT florentinaesoto synapticremodelingofneuronalcircuitsinearlyretinaldegeneration
AT danielekerschensteiner synapticremodelingofneuronalcircuitsinearlyretinaldegeneration
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