When Is a Control Not a Control? Reactive Microglia Occur Throughout the Control Contralateral Pathway of Retinal
James R Tribble1, Eirini Kokkali2, Amin Otmani1
1Department of Clinical Neuroscience, Division of Eye and Vision, St. Erik Eye Hospital, Karolinska Institutet, Stockholm, Sweden.
Purpose:
Animal models show retinal ganglion cell (RGC) injuries that replicate features of glaucoma and the contralateral eye is commonly used as an internal control. There is significant crossover of RGC axons from the ipsilateral to the contralateral side at the level of the optic chiasm, which may confound findings when damage is restricted to one eye. The effect of unilateral glaucoma on neuroinflammatory damage to the contralateral pathway of RGC projections has largely been unexplored.
Methods:
Ocular hypertensive glaucoma was induced unilaterally or bilaterally in the rat and RGC neurodegenerative events were assessed. Neuroinflammation was quantified in the retina, optic nerve head, optic nerve, lateral geniculate nucleus, and superior colliculus by high-resolution imaging, and in the retina by flow cytometry and protein arrays.
Results:
After ocular hypertensive stress, peripheral monocytes enter the retina and microglia become reactive. This effect is more marked in animals with bilateral ocular hypertensive glaucoma. In rats where glaucoma was induced unilaterally, there was significant microglia activation in the contralateral (control) eye. Microglial activation extended into the optic nerve and terminal visual thalami, where it was similar across hemispheres in unilateral ocular hypertension.
Conclusions:
These data suggest that caution is warranted when using the contralateral eye as a control and in comparing visual thalami in unilateral models of glaucoma.
Translational Relevance:
The use of a contralateral eye as a control may confound the discovery of human-relevant mechanism and treatments in animal models. We also identify neuroinflammatory protein responses that warrant further investigation as potential disease-modifiable targets.
Insights
Using the contralateral eye as a control in glaucoma animal models may be misleading due to cross-over effects. Unilateral glaucoma induces neuroinflammation in the control eye, impacting research findings.
Area of Science:
- Ophthalmology
- Neuroscience
- Immunology
Background:
- Glaucoma research often uses animal models with retinal ganglion cell (RGC) injuries.
- The contralateral eye is frequently used as an internal control in unilateral glaucoma studies.
- RGC axons can cross to the contralateral side at the optic chiasm, potentially confounding results.
Purpose of the Study:
- To investigate the impact of unilateral glaucoma on neuroinflammation in the contralateral RGC pathway.
- To determine if the contralateral eye is a reliable control in unilateral glaucoma models.
Main Methods:
- Ocular hypertensive glaucoma was induced unilaterally or bilaterally in rats.
- Neuroinflammation was assessed in various ocular and neural tissues using imaging, flow cytometry, and protein arrays.
- Retinal ganglion cell neurodegenerative events were quantified.
Main Results:
- Ocular hypertensive stress led to peripheral monocyte entry and microglial activation in the retina.
- In unilateral glaucoma models, significant microglial activation was observed in the contralateral (control) eye.
- Neuroinflammation extended into the optic nerve and visual thalami, showing similar patterns across hemispheres in unilateral cases.
Conclusions:
- Caution is advised when using the contralateral eye as a control in unilateral glaucoma models.
- Comparing visual thalami in unilateral glaucoma studies may be confounded by cross-hemispheric neuroinflammation.
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