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Retinal Gene Expression Responses to Aging Are Sexually Divergent

Overview
Journal Mol Vis
Date 2017 Oct 25
PMID 29062222
Citations 30
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Abstract

Purpose: Sex and age are critical factors in a variety of retinal diseases but have garnered little attention in preclinical models. The current lack of knowledge impairs informed decision making regarding inclusion and design of studies that incorporate both sexes and/or the effects of aging. The goal of this study was to examine normative mouse retina gene expression in both sexes and with advancing age.

Methods: Retinal gene expression in female and male C57BL/6JN mice at 3 months and 24 months of age were compared for sex differences and aging responses through whole transcriptome microarray analysis. Sex differences and age-related changes were examined in the context of cellular pathways and processes, regulatory patterns, and cellular origin, as well as for overlap with described changes in retinal disease models. Selected age and sex differences were confirmed with quantitative PCR.

Results: Age-related gene expression changes demonstrated commonalities and sexually divergent responses. Several cellular pathways and processes, especially inflammation-related, are affected and were over-represented in fibroblast, microglial, and ganglion cell-specific genes. Lifelong, and age-dependent, sex differences were observed and were over-represented in fibroblast-specific genes. Age and sex differences were also observed to be regulated in models of diabetic retinopathy, glaucoma, and other diseases.

Conclusions: These findings demonstrate that most age-related changes in retinal gene expression are sexually divergent and that there are significant sex differences in gene expression throughout the lifespan. These data serve as a resource for vision researchers seeking to include sex and age as factors in their preclinical studies.

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References
1.
Yoshida S, Yashar B, Hiriyanna S, Swaroop A . Microarray analysis of gene expression in the aging human retina. Invest Ophthalmol Vis Sci. 2002; 43(8):2554-60. View

2.
Van Kirk C, Vanguilder H, Young M, Farley J, Sonntag W, Freeman W . Age-related alterations in retinal neurovascular and inflammatory transcripts. Mol Vis. 2011; 17:1261-74. PMC: 3103744. View

3.
Yu X, Rajala R, McGinnis J, Li F, Anderson R, Yan X . Involvement of insulin/phosphoinositide 3-kinase/Akt signal pathway in 17 beta-estradiol-mediated neuroprotection. J Biol Chem. 2004; 279(13):13086-94. DOI: 10.1074/jbc.M313283200. View

4.
Allison D, Cui X, Page G, Sabripour M . Microarray data analysis: from disarray to consolidation and consensus. Nat Rev Genet. 2005; 7(1):55-65. DOI: 10.1038/nrg1749. View

5.
Chaychi S, Polosa A, Lachapelle P . Differences in Retinal Structure and Function between Aging Male and Female Sprague-Dawley Rats are Strongly Influenced by the Estrus Cycle. PLoS One. 2015; 10(8):e0136056. PMC: 4552560. DOI: 10.1371/journal.pone.0136056. View