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Requirement for Microglia for the Maintenance of Synaptic Function and Integrity in the Mature Retina
Abstract:
Microglia, the principal resident immune cell of the CNS, exert significant influence on neurons during development and in pathological situations. However, if and how microglia contribute to normal neuronal function in the mature uninjured CNS is not well understood. We used the model of the adult mouse retina, a part of the CNS amenable to structural and functional analysis, to investigate the constitutive role of microglia by depleting microglia from the retina in a sustained manner using genetic methods. We discovered that microglia are not acutely required for the maintenance of adult retinal architecture, the survival of retinal neurons, or the laminar organization of their dendritic and axonal compartments. However, sustained microglial depletion results in the degeneration of photoreceptor synapses in the outer plexiform layer, leading to a progressive functional deterioration in retinal light responses. Our results demonstrate that microglia are constitutively required for the maintenance of synaptic structure in the adult retina and for synaptic transmission underlying normal visual function. Our findings on constitutive microglial function are relevant in understanding microglial contributions to pathology and in the consideration of therapeutic interventions that reduce or perturb constitutive microglial function.
Significance Statement:
Microglia, the principal resident immune cell population in the CNS, has been implicated in diseases in the brain and retina. However, how they contribute to the everyday function of the CNS is unclear. Using the model of the adult mouse retina, we examined the constitutive role of microglia by depleting microglia from the retina. We found that in the absence of microglia, retinal neurons did not undergo overt cell death or become structurally disorganized in their processes. However, connections between neurons called synapses begin to break down, leading to a decreased ability of the retina to transmit light responses. Our results indicate that retinal microglia contribute constitutively to the maintenance of synapses underlying healthy vision.
Insights
Resident immune cells called microglia are essential for maintaining healthy synapses in the adult retina. Their depletion leads to synapse degeneration and impaired visual function, highlighting their constitutive role in vision.
Area of Science:
- Neuroscience
- Immunology
- Ophthalmology
Background:
- Microglia are the primary immune cells in the central nervous system (CNS).
- Their role in normal, mature CNS function is not fully understood, particularly in the retina.
- Previous research has focused on their involvement in CNS development and disease.
Purpose of the Study:
- To investigate the constitutive role of microglia in the mature, uninjured adult mouse retina.
- To determine if microglia are required for maintaining retinal architecture, neuronal survival, and synaptic integrity.
Main Methods:
- Sustained depletion of microglia from the adult mouse retina using genetic methods.
- Analysis of retinal architecture, neuronal survival, and synaptic organization.
- Assessment of retinal light responses to evaluate visual function.
Main Results:
- Microglia depletion did not cause acute retinal architectural changes or neuronal death.
- Sustained microglial absence led to photoreceptor synapse degeneration in the outer plexiform layer.
- Functional decline in retinal light responses was observed following microglial depletion.
Conclusions:
- Microglia are constitutively required for maintaining synaptic structure in the adult retina.
- These cells play a crucial role in synaptic transmission essential for normal visual function.
- Findings emphasize the importance of constitutive microglial function in retinal health and potential therapeutic strategies.
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