Microglia cells are active players in regulating synaptic development and plasticity in the brain. However, how they influence the normal functioning of synapses is largely unknown. In this study, we characterized the effects of pharmacological microglia depletion, achieved by administration of PLX5622, on hippocampal CA3-CA1 synapses of adult wild type mice. Following microglial depletion, we observed a reduction of spontaneous and evoked glutamatergic activity associated with a decrease of dendritic spine density. We also observed the appearance of immature synaptic features and higher levels of plasticity. Microglia depleted mice showed a deficit in the acquisition of the Novel Object Recognition task. These events were accompanied by hi...
Microglia are the immunocompetent cells of the central nervous system. In the physiological setting,...
The mechanisms by which astrocytes modulate neural homeostasis, synaptic plasticity, and memory are ...
Microglia, the brain's resident macrophages, actively contributes to the homeostasis of cerebral par...
Microglia cells are active players in regulating synaptic development and plasticity in the brain. H...
Deficient neuron-microglia signaling during brain development is associated with abnormal synaptic m...
SummaryMicroglia are the resident macrophages of the CNS, and their functions have been extensively ...
The hippocampus is a plastic brain area that shows functional segregation along its longitudinal axi...
Microglia have crucial roles in sculpting synapses and maintaining neural circuits during developmen...
Microglia populate the early developing brain and mediate pruning of the central synapses. Yet, litt...
Microglia are dynamic cells, constantly surveying their surroundings and interacting with neurons an...
Microglia are immune cells that play a crucial role in maintaining brain homeostasis. Among the mech...
The pro-inflammatory cytokine tumor necrosis factor α (TNFα) tunes the capacity of neurons to expres...
Microglia are highly motile phagocytic cells that infiltrate and take up residence in the developing...
‘Dysbiosis’ of the adult gut microbiota, in response to challenges such as infection, altered diet, ...
‘Dysbiosis’ of the adult gut microbiota, in response to challenges such as infection, altered diet, ...
Microglia are the immunocompetent cells of the central nervous system. In the physiological setting,...
The mechanisms by which astrocytes modulate neural homeostasis, synaptic plasticity, and memory are ...
Microglia, the brain's resident macrophages, actively contributes to the homeostasis of cerebral par...
Microglia cells are active players in regulating synaptic development and plasticity in the brain. H...
Deficient neuron-microglia signaling during brain development is associated with abnormal synaptic m...
SummaryMicroglia are the resident macrophages of the CNS, and their functions have been extensively ...
The hippocampus is a plastic brain area that shows functional segregation along its longitudinal axi...
Microglia have crucial roles in sculpting synapses and maintaining neural circuits during developmen...
Microglia populate the early developing brain and mediate pruning of the central synapses. Yet, litt...
Microglia are dynamic cells, constantly surveying their surroundings and interacting with neurons an...
Microglia are immune cells that play a crucial role in maintaining brain homeostasis. Among the mech...
The pro-inflammatory cytokine tumor necrosis factor α (TNFα) tunes the capacity of neurons to expres...
Microglia are highly motile phagocytic cells that infiltrate and take up residence in the developing...
‘Dysbiosis’ of the adult gut microbiota, in response to challenges such as infection, altered diet, ...
‘Dysbiosis’ of the adult gut microbiota, in response to challenges such as infection, altered diet, ...
Microglia are the immunocompetent cells of the central nervous system. In the physiological setting,...
The mechanisms by which astrocytes modulate neural homeostasis, synaptic plasticity, and memory are ...
Microglia, the brain's resident macrophages, actively contributes to the homeostasis of cerebral par...