Spontaneous Achromatopsia-Like Phenotype in Albino Swiss CD-1 Mice: Retinocortical Dysfunction, Neurovascular Remodeling, and Glial Activation

Purpose: To characterize the functional, structural, vascular, genetic, and histologic correlates of spontaneous retinal electrophysiological phenotypes in male CD-1 mice to ensure accurate phenotyping in vision research. Methods: Baseline full-field flash ERG (ffERG) was recorded in 205 male CD-1 mice. Subsets were evaluated using visual evoked potentials (VEP; n = 12), optical coherence tomography/optical coherence tomography angiography (OCT/OCTA) (n = 17), Gnat2 genotyping (n = 8), and quantitative immunohistochemistry (n = 5-6/phenotype) for cone arrestin, rhodopsin, PKCα (bipolar cells), Brn3a (ganglion cells), Iba1 (microglia), and GFAP (macroglia). Results: FfERG identified three phenotypes: normal (n = 74), cone dysfunction (n = 126), and severe retinal dysfunction (n = 5). FfERG and VEP showed absent cone responses in cone dysfunction mice and complete response abolition in the severe group. OCT/OCTA revealed outer retinal thinning and deep capillary plexus remodeling in severe dysfunction, whereas the cone dysfunction mice retained overall structure. Genotyping confirmed Gnat2 mutations in affected groups. Histology confirmed isolated cone loss in cone dysfunction and combined rod-cone loss in severe dysfunction, both with increased glial activation. Brn3a+ ganglion cells were significantly reduced in both affected groups compared to in normal mice. Conclusions: Spontaneous Gnat2-associated retinal dysfunction is common in CD-1 mice, causing photoreceptor loss, neuroinflammation, and ganglion cell reduction. Baseline electrophysiological screening is crucial when using this strain for vision research.

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Journal
Investigative Ophthalmology & Visual Science
Published
2026-10-09
DOI
https://doi.org/10.1167/iovs.67.12.20
Primary Topic
Retinal Development and Disorders
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article
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article

Spontaneous Achromatopsia-Like Phenotype in Albino Swiss CD-1 Mice: Retinocortical Dysfunction, Neurovascular Remodeling, and Glial Activation

Juan Salazar, José A. Matamoros, Inés López Cuenca, Marta Cantero et al.
Investigative Ophthalmology & Visual Science
Retinal Development and Disorders
article

Spontaneous Achromatopsia-Like Phenotype in Albino Swiss CD-1 Mice: Retinocortical Dysfunction, Neurovascular Remodeling, and Glial Activation

Juan Salazar, José A. Matamoros, Inés López Cuenca, Marta Cantero, Lluı́s Montoliu, A. Sánchez, Lorena Elvira‐Hurtado, Víctor Paleo‐García, Pedro Villa, Rosa de Hoz, José A. Fernández-Albarral, Santiago Milla-Navarro, Francisco J. Germain, Elena Salobrar-García
article en

Abstract

Purpose: To characterize the functional, structural, vascular, genetic, and histologic correlates of spontaneous retinal electrophysiological phenotypes in male CD-1 mice to ensure accurate phenotyping in vision research. Methods: Baseline full-field flash ERG (ffERG) was recorded in 205 male CD-1 mice. Subsets were evaluated using visual evoked potentials (VEP; n = 12), optical coherence tomography/optical coherence tomography angiography (OCT/OCTA) (n = 17), Gnat2 genotyping (n = 8), and quantitative immunohistochemistry (n = 5-6/phenotype) for cone arrestin, rhodopsin, PKCα (bipolar cells), Brn3a (ganglion cells), Iba1 (microglia), and GFAP (macroglia). Results: FfERG identified three phenotypes: normal (n = 74), cone dysfunction (n = 126), and severe retinal dysfunction (n = 5). FfERG and VEP showed absent cone responses in cone dysfunction mice and complete response abolition in the severe group. OCT/OCTA revealed outer retinal thinning and deep capillary plexus remodeling in severe dysfunction, whereas the cone dysfunction mice retained overall structure. Genotyping confirmed Gnat2 mutations in affected groups. Histology confirmed isolated cone loss in cone dysfunction and combined rod-cone loss in severe dysfunction, both with increased glial activation. Brn3a+ ganglion cells were significantly reduced in both affected groups compared to in normal mice. Conclusions: Spontaneous Gnat2-associated retinal dysfunction is common in CD-1 mice, causing photoreceptor loss, neuroinflammation, and ganglion cell reduction. Baseline electrophysiological screening is crucial when using this strain for vision research.

Investigative Ophthalmology & Visual ScienceVol. 67(12)
Universidad Complutense de Madrid (ES), Universidad de Alcalá (ES), Hospital Clínico San Carlos (ES), Instituto de Investigación Sanitaria del Hospital Clínico San Carlos (ES), Centro Nacional de Biotecnología (ES), Centre for Biomedical Network Research on Rare Diseases (ES), Instituto Ramón y Cajal de Investigación Sanitaria (ES), Institute for Bioengineering of Catalonia (ES)
Openalex Percentile: Top 23%
Retinal Development and Disorders
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