Related Experiment Video
Updated: Jan 19, 2026
Quantification of Retinal Ganglion Cell Somas Following Cauterization-Induced Ocular Hypertension
Published on: April 28, 2025
Reversibility of Retinal Ganglion Cell Dysfunction From Chronic IOP Elevation
Da Zhao1, Vickie H Y Wong1, Christine T O Nguyen1
1Department of Optometry and Vision Sciences, University of Melbourne, Parkville, Victoria, Australia.
Purpose:
To test the hypothesis that the capacity for retinal ganglion cells to functionally recover from chronic IOP elevation is dependent on the duration of IOP elevation.
Methods:
IOP elevation was induced in one eye in anesthetized (isoflurane) adult C57BL6/J mice using a circumlimbal suture. Sutures were left in place for 8 and 16 weeks (n = 30 and 28). In two other groups the suture was cut after 8 and 12 weeks (n = 30 and 28), and ganglion cell function (electroretinography) and retinal structure (optical coherence tomography) were assessed 4 weeks later. Ganglion cell density was quantified by counting RBPMS (RNA-binding protein with multiple splicing)-stained cells.
Results:
With IOP elevation (∼10 mm Hg above baseline), ganglion cell function declined to 75% ± 8% at 8 weeks and 59% ± 4% at 16 weeks relative to contralateral control eyes. The retinal nerve fiber layer was thinner at 8 (84% ± 4%) and 16 weeks (83% ± 3%), without a significant difference in total retinal thickness. Ganglion cell function recovered with IOP normalization (suture removal) at week 8 (97% ± 7%), but not at week 12 (73% ± 6%). Ganglion cell loss was found in all groups (-8% to -13%).
Conclusions:
In the mouse circumlimbal suture model, 12 weeks of IOP elevation resulted in irreversible ganglion cell dysfunction, whereas retinal dysfunction was fully reversible after 8 weeks of IOP elevation.
Related Concept Videos
Quantification of Retinal Ganglion Cell Somas Following Cauterization-Induced Ocular Hypertension
05:26Transfection of Mouse Retinal Ganglion Cells by in vivo Electroporation
11:26Single-cell RNA-Seq of Defined Subsets of Retinal Ganglion Cells
13:02An Isolated Retinal Preparation to Record Light Response from Genetically Labeled Retinal Ganglion Cells
03:10Generation of Primary Retinal Ganglion Cell Cultures From Zebrafish Embryos
Identification of Mouse Retinal Ganglion Cell Subtypes Through Fluorescent Tracing

