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Invest Ophthalmol Vis Sci ; 56(8): 4592-604, 2015 Jul.
Article in English | MEDLINE | ID: mdl-26200499

ABSTRACT

PURPOSE: To study the population of intrinsically photosensitive retinal ganglion cells (melanopsin-expressing RGCs, m+RGCs) in P23H-1 rats, a rat model of inherited photoreceptor degeneration. METHODS: At postnatal (P) times P30, P365, and P540, retinas from P23H dystrophic rats (line 1, rapid degeneration; and line 3, slow degeneration) and Sprague Dawley (SD) rats (control) were dissected as whole-mounts and immunodetected for melanopsin and/or Brn3a. The dendritic arborization of m+RGCs and the numbers of Brn3a+RGCs and m+RGCs were quantified and their retinal distribution and coexpression analyzed. RESULTS: In SD rats, aging did not affect the population of Brn3a+RGCs or m+RGCs or the percentage that showed coexpression (0.27%). Young P23H-1 rats had a significantly lower number of Brn3a+RGCs and showed a further decline with age. The population of m+RGCs in young P23H-1 rats was similar to that found in SD rats and decreased by 22.6% and 28.2% at P365 and P540, respectively, similarly to the decrease of the Brn3a+RGCs. At these ages the m+RGCs showed a decrease of their dendritic arborization parameters, which was similar in both the P23H-1 and P23H-3 lines. The percentage of coexpression of Brn3a was, however, already significantly higher at P30 (3.31%) and increased significantly with age (10.65% at P540). CONCLUSIONS: Inherited photoreceptor degeneration was followed by secondary loss of Brn3a+RGCs and m+RGCs. Surviving m+RGCs showed decreased dendritic arborization parameters and increased coexpression of Brn3a and melanopsin, phenotypic and molecular changes that may represent an effort to resist degeneration and/or preferential survival of m+RGCs capable of synthesizing Brn3a.


Subject(s)
Gene Expression Regulation , Photoreceptor Cells, Vertebrate/pathology , Retinal Degeneration/genetics , Retinal Ganglion Cells/pathology , Transcription Factor Brn-3A/genetics , Animals , Cell Death , Disease Models, Animal , Immunoenzyme Techniques , Photoreceptor Cells, Vertebrate/metabolism , Rats , Rats, Sprague-Dawley , Rats, Transgenic , Retinal Degeneration/metabolism , Retinal Degeneration/pathology , Retinal Ganglion Cells/metabolism , Rod Opsins , Transcription Factor Brn-3A/biosynthesis , Transcription Factor Brn-3A/immunology
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