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Cone and rod cells have different target preferences in vitro as revealed by optical tweezers

PURPOSE: When neural circuits are damaged in adulthood, regenerating and sprouting processes must distinguish appropriate targets to recreate the normal circuitry. We tested the ability of adult nerve cells to target specific cells in culture using the retina as a model system. METHODS: Under steril...

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Autores principales: Clarke, Robert J., Högnason, Kormákur, Brimacombe, Michael, Townes-Anderson, Ellen
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2383278/
https://www.ncbi.nlm.nih.gov/pubmed/18432315
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author Clarke, Robert J.
Högnason, Kormákur
Brimacombe, Michael
Townes-Anderson, Ellen
author_facet Clarke, Robert J.
Högnason, Kormákur
Brimacombe, Michael
Townes-Anderson, Ellen
author_sort Clarke, Robert J.
collection PubMed
description PURPOSE: When neural circuits are damaged in adulthood, regenerating and sprouting processes must distinguish appropriate targets to recreate the normal circuitry. We tested the ability of adult nerve cells to target specific cells in culture using the retina as a model system. METHODS: Under sterile culture conditions, retinal cells, isolated from tiger salamander retina, were micromanipulated with optical tweezers to create pairs of first-order photoreceptor cells with second- or third-order retinal neurons. The development of cell contact and presynaptic varicosities, the direction and amount of neuritic growth, and nerve cell polarity were assessed after seven days in vitro. Cultures were labeled for rod opsin to distinguish rod from cone cells and for the alpha subunit of the trimeric G protein Go (Goα) to identify cone-dominated and mixed rod-cone ON bipolar cells. RESULTS: Quantitative analysis of growth demonstrated that target preferences were cell-specific: Cone cells preferred second-order bipolar cells, whereas rod cells grew toward third-order neurons, which include amacrine and ganglion cells. In addition, when rod cells grew toward bipolar cells, they chose an abnormally high number of Goα-positive bipolar cells. These growth patterns were not affected by tweezers manipulation or the amount of growth. Cell orientation of the photoreceptor also did not affect preferences: Cells oriented away from dendritic processes could reorient their axonal pole toward the target cell. CONCLUSIONS: Cone cells preferred normal partners, and rod cells preferred novel partners. These intrinsic preferences indicate that adult nerve cells can have differing capacities for targeting even if they come from the same cell class. Further, these differences may help explain the patterns of photoreceptor sprouting seen in retinal degeneration in which rod, but not cone, cells invade the inner retinal layers where third-order neurons are located.
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spelling pubmed-23832782008-05-15 Cone and rod cells have different target preferences in vitro as revealed by optical tweezers Clarke, Robert J. Högnason, Kormákur Brimacombe, Michael Townes-Anderson, Ellen Mol Vis Research Article PURPOSE: When neural circuits are damaged in adulthood, regenerating and sprouting processes must distinguish appropriate targets to recreate the normal circuitry. We tested the ability of adult nerve cells to target specific cells in culture using the retina as a model system. METHODS: Under sterile culture conditions, retinal cells, isolated from tiger salamander retina, were micromanipulated with optical tweezers to create pairs of first-order photoreceptor cells with second- or third-order retinal neurons. The development of cell contact and presynaptic varicosities, the direction and amount of neuritic growth, and nerve cell polarity were assessed after seven days in vitro. Cultures were labeled for rod opsin to distinguish rod from cone cells and for the alpha subunit of the trimeric G protein Go (Goα) to identify cone-dominated and mixed rod-cone ON bipolar cells. RESULTS: Quantitative analysis of growth demonstrated that target preferences were cell-specific: Cone cells preferred second-order bipolar cells, whereas rod cells grew toward third-order neurons, which include amacrine and ganglion cells. In addition, when rod cells grew toward bipolar cells, they chose an abnormally high number of Goα-positive bipolar cells. These growth patterns were not affected by tweezers manipulation or the amount of growth. Cell orientation of the photoreceptor also did not affect preferences: Cells oriented away from dendritic processes could reorient their axonal pole toward the target cell. CONCLUSIONS: Cone cells preferred normal partners, and rod cells preferred novel partners. These intrinsic preferences indicate that adult nerve cells can have differing capacities for targeting even if they come from the same cell class. Further, these differences may help explain the patterns of photoreceptor sprouting seen in retinal degeneration in which rod, but not cone, cells invade the inner retinal layers where third-order neurons are located. Molecular Vision 2008-04-21 /pmc/articles/PMC2383278/ /pubmed/18432315 Text en http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Clarke, Robert J.
Högnason, Kormákur
Brimacombe, Michael
Townes-Anderson, Ellen
Cone and rod cells have different target preferences in vitro as revealed by optical tweezers
title Cone and rod cells have different target preferences in vitro as revealed by optical tweezers
title_full Cone and rod cells have different target preferences in vitro as revealed by optical tweezers
title_fullStr Cone and rod cells have different target preferences in vitro as revealed by optical tweezers
title_full_unstemmed Cone and rod cells have different target preferences in vitro as revealed by optical tweezers
title_short Cone and rod cells have different target preferences in vitro as revealed by optical tweezers
title_sort cone and rod cells have different target preferences in vitro as revealed by optical tweezers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2383278/
https://www.ncbi.nlm.nih.gov/pubmed/18432315
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