Abstract
Purpose: To examine whether time of year (relative to hibernation emergence) influences the retinal degenerative effects of intravitreal injection of adenosine triphosphate (ATP) in the 13-lined ground squirrel (13-LGS). Methods: Eighteen (9 male, 9 female) 13-LGS in three experimental cohorts (early season, mid-season, late season) (n = 6 each) underwent baseline imaging using scanning light ophthalmoscopy (SLO) and optical coherence tomography (OCT). Animals then received a 10-μL intravitreal injection of 0.723 M ATP, followed by OCT and SLO imaging at 3, 10, and 21 days. Adaptive optics SLO (AOSLO) was performed in animals without retinal damage after the 21-day follow-up. Retinal thickness, choroidal thickness, and cone density measures were compared to values from wild-type controls (n = 12). Results: Five animals (four early season, one late season) showed retinal damage post-ATP injection (Fisher’s exact test, P = 0.065). Animals with retinal damage displayed areas of disrupted retinal lamination on OCT. Any changes in OCT thickness were generally present on initial follow-up and resolved at later time points. Follow-up imaging with AOSLO on animals without retinal damage showed no significant differences in the cone mosaic topography from control eyes. Axial length was increased in mid-/late-season cohorts relative to early season (P = 0.0025 and P = 0.0007). Conclusions: In this pilot study, the 13-LGS appears more susceptible to ATP-induced retinal damage during the early season. Future studies adjusting dose based on ocular biometry may help elucidate the impact of time of year on chemical response. Translational Relevance: Consideration of ocular biometry in this and other animal models is merited when using intravitreal methods of chemical administration.
| Original language | English |
|---|---|
| Article number | 5 |
| Journal | Translational Vision Science and Technology |
| Volume | 13 |
| Issue number | 11 |
| DOIs | |
| State | Published - Nov 2024 |
Bibliographical note
Publisher Copyright:© 2024 The Authors.
Funding
Supported by the National Eye Institute of the National Institutes of Health (NIH) under award number U24EY029891 and U01EY025477. This investigation was conducted, in part, in a facility constructed with support from a Research Facilities Improvement Program, grant number C06RR016511 from the National Center for Research Resources, NIH. The content is solely the responsibility of the authors and does not necessarily represent the official views of the NIH. Additional support was provided by Foundation Fighting Blindness (FFB PPA-0641-0718-UCSF).
| Funders | Funder number |
|---|---|
| National Eye Institute of the National Institutes of Health | |
| National Center for Research Resources | |
| National Institutes of Health (NIH) | U01EY025477, U24EY029891, C06RR016511 |
| Foundation Fighting Blindness | FFB PPA-0641-0718-UCSF |
Keywords
- adaptive optics
- cone photoreceptors
- ground squirrel
- hibernation
- optical coherence tomography
ASJC Scopus subject areas
- Biomedical Engineering
- Ophthalmology
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