Microglia undergo rapid phenotypic transformation in acute brain slices but remain essential for neuronal synchrony
Berki, P.; Cserep, C.; Posfai, B.; Szabadits, E.; Kornyei, Z.; Kellermayer, A.; Nyerges, M.; Xiaofei, W.; Mody, I.; Kunihiko, A.; Heinz, B.; Kaikai, H.; Ya, W.; Wu, Z.; Jing, M.; Li, Y.; Gulyas, A. I.; Denes, A.
Show abstract
Acute brain slices represent a "workhorse" model for studying the central nervous system (CNS) from nanoscale events to complex circuits. While slice preparation inherently involves tissue injury, it is unclear how microglia, the main immune cells and damage sensors of the CNS shape tissue integrity ex vivo. To this end, we have studied the mechanisms of microglial phenotype changes and contribution to neuronal network organisation and functioning in acute brain slices. Using a novel ATP- reporter mouse line and microglia reporter mice, we show that acute slice preparation induces rapid, P2Y12 receptor (P2Y12R) dependent dislocation and migration of microglia, paralleled with marked morphological transformations driven by early ATP surges and subsequent ATP flashes. Gradual depolarization of microglia is associated with the downregulation of purinergic P2Y12R and time-dependent changes of microglia-neuron interactions, paralleled by altered numbers of excitatory and inhibitory synapses. Importantly, functional microglia not only modulate synapse sprouting, but the absence of microglia or microglial P2Y12R markedly diminishes the incidence, amplitude, and frequency of sharp wave-ripple activity in hippocampal slices. Collectively, our data suggest that microglia are inherent modulators of complex neuronal networks, and their specific actions are indispensable to maintain neuronal network integrity and activity ex vivo. These findings could facilitate new lines of research resulting in improved ex vivo methodologies and a better understanding of microglia-neuron interactions both in physiological and pathological conditions.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Microglia control glutamatergic synapses in the adult mouse hippocampus 97%
- Astrocytic Chromatin Remodeler ATRX Gates Hippocampal Memory Consolidation through Metabolic and Synaptic Regulation 95%
- Features Of Hippocampal Astrocytic Domains And Their Spatial Relation To Excitatory And Inhibitory Neurons 95%
Similar papers in this journal
- Jedi-1/MEGF12-mediated phagocytosis controls the pro-neurogenic properties of microglia in the ventricular-subventricular zone 95%
- Microglia reactivity entails microtubule remodeling from acentrosomal to centrosomal arrays 94%
- Microglia dysfunction caused by the loss of Rhoa disrupts neuronal physiology and leads to neurodegeneration 94%
Similar papers in this journal
- A Novel Tmem119-tdTomato Reporter Mouse Model for Studying Microglia in the Central Nervous System 95%
- Autoimmune inflammation triggers aberrant astrocytic calcium signaling to impair synaptic plasticity 95%
- The effects of P2Y12 loss on microglial gene expression, dynamics, and injury response in the cerebellum and cerebral cortex. 95%
Similar papers in this journal
- Erythropoietin restrains the inhibitory potential of interneurons in the mouse hippocampus 96%
- Ucp2-dependent microglia-neuronal coupling controls ventral hippocampal circuit function and anxiety-like behavior 95%
- Neural stem and progenitor cells support and protect adult hippocampal function via vascular endothelial growth factor secretion. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.