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Updated: Dec 26, 2025

Assessing Retinal Microglial Phagocytic Function In Vivo Using a Flow Cytometry-based Assay
Published on: October 18, 2016
Effects of age on retinal macrophage responses to acute elevation of intraocular pressure
Jelena M Kezic1, Vicki Chrysostomou2, Paul G McMenamin3
1Centre for Eye Research Australia, Department of Ophthalmology, University of Melbourne, Royal Victorian Eye and Ear Hospital, 32 Gisborne Street, East Melbourne, Victoria, 3002, Australia; Department of Anatomy and Developmental Biology, Monash University, Wellington Road, Clayton, Victoria, 3800, Australia.
Abstract:
There is accumulating evidence that aging shifts the central nervous system milieu towards a proinflammatory state, with increased reactivity of microglia in the aging eye and brain having been implicated in the development of age-related neurodegenerative conditions. Indeed, alterations to microglial morphology and function have been recognized as a part of normal aging. Here, we sought to assess the effects of age on the retinal microglial and macrophage response to acute intraocular pressure (IOP) elevation. Further, we performed experiments whereby bone marrow from young or middle-aged mice was used to reconstitute the bone marrow of whole-body irradiated 12 month old mice. Bone marrow chimeric mice then underwent cannulation and IOP elevation 8 weeks after whole-body irradiation and bone marrow transplantation in order to determine whether the age of bone marrow alters the macrophage response to retinal injury. Our data show retinal macrophage reactivity and microglial morphological changes were enhanced in older mice when compared to younger mice in response to injury. When IOP elevation was performed after whole-body irradiation and bone marrow rescue, we noted subretinal macrophage accumulation and glial reactivity was reduced compared to non-irradiated mice that had also undergone IOP elevation. This effect was evident in both groups of chimeric mice that had received either young or middle-aged bone marrow, suggesting irradiation itself may alter the macrophage and glial response to injury rather than the age of bone marrow.
Insights
Aging enhances the inflammatory response in the eye, increasing microglial and macrophage reactivity to injury. Irradiation, not bone marrow age, significantly reduced this inflammatory response in aged mice.
Area of Science:
- Neuroscience
- Immunology
- Ophthalmology
Background:
- Aging promotes a pro-inflammatory central nervous system state.
- Microglial and macrophage reactivity in the aging eye contributes to neurodegeneration.
- Microglial morphology and function change with normal aging.
Purpose of the Study:
- To investigate how age affects retinal microglial and macrophage responses to elevated intraocular pressure (IOP).
- To determine if bone marrow age influences the macrophage response to retinal injury in aged mice.
Main Methods:
- Acute intraocular pressure (IOP) elevation in young and middle-aged mice.
- Bone marrow transplantation using young or middle-aged bone marrow into irradiated aged mice.
- Assessment of retinal macrophage and microglial responses post-IOP elevation.
Main Results:
- Older mice exhibited enhanced retinal macrophage reactivity and microglial morphological changes after injury compared to younger mice.
- Whole-body irradiation and bone marrow rescue reduced subretinal macrophage accumulation and glial reactivity in aged mice.
- The age of the transplanted bone marrow (young vs. middle-aged) did not alter the reduced inflammatory response post-irradiation.
Conclusions:
- Retinal glial and macrophage responses to injury are heightened in aged mice.
- Irradiation, independent of bone marrow age, significantly modulates the inflammatory response to retinal injury in aged mice.
- These findings suggest irradiation, rather than bone marrow donor age, is a key factor in altering the glial and macrophage response to injury.
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