Brain rhythms control microglial response and cytokine expression via NFkappaB signaling
Prichard, A.; Garza, K. M.; Shridhar, A.; He, C.; Bitfaran, S.; Wang, Y.; Goodson, M. C.; Jaeger, D.; Wood, L. B.; Singer, A. C.
Show abstract
Microglia, the brains primary immune cells, transform in response to changes in sensory or neural activity, like sensory deprivation. However, little is known about how specific frequencies of neural activity, or brain rhythms, impact microglia and cytokine signaling. Using visual noninvasive flickering sensory stimulation (flicker) to induce electrical neural activity at different frequencies, 40Hz, within the gamma band and 20Hz, within the beta band, we discovered these brain rhythms differentially affect microglial morphology and cytokine expression in healthy animals. We found that flicker induced expression of certain cytokines, including IL-10 and M-CSF, that was independent of microglia. Because NF{kappa}B is activated by synaptic activity and regulates cytokines, we hypothesized this pathway plays a causal role in frequency-specific cytokine and microglial responses. Indeed, we found that after flicker, phospho-NF{kappa}B co-labeled with neurons more than microglia. Furthermore, inhibition of NF{kappa}B signaling by a small molecule inhibitor down-regulated flicker-induced cytokine expression and attenuated flicker-induced changes in microglia morphology. These results reveal a new mechanism through which brain rhythms affect brain function by altering microglia morphology and cytokines via NF{kappa}B. TeaserFrequency-specific brain rhythms regulate cytokine expression, microglia morphology, and microglia-independent expression of M-CSF and IL10 via NF{kappa}B.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A developmental analysis of juxtavascular microglia dynamics and interactions with the vasculature 94%
- Disruption of autism-associated Pcdh9 gene leads to transcriptional alterations, synapses overgrowth and aberrant excitatory transmission in the CA1 93%
- SIPA1L1/SPAR1 is a non-PSD protein involved in GPCR signaling 93%
Similar papers in this journal
- Jedi-1/MEGF12-mediated phagocytosis controls the pro-neurogenic properties of microglia in the ventricular-subventricular zone 95%
- Loss of Neurofibromin Induces Inflammatory Macrophage Phenotypic Switch and Retinal Neovascularization via GLUT1 Activation 94%
- Microglia reactivity entails microtubule remodeling from acentrosomal to centrosomal arrays 94%
Similar papers in this journal
- Astrocyte-to-microglia communication via Sema4B-Plexin-B2 modulates injury-induced reactivity of microglia 95%
- microRNA-218-5p Coordinates Scaling of Excitatory and Inhibitory Synapses during Homeostatic Synaptic Plasticity 95%
- Sex and interferon gamma signalling regulate microglia migration in adult mouse cortex in vivo 95%
Similar papers in this journal
- Chemogenetic activation of microglial Gi signaling decreases microglial surveillance and impairs neuronal synchronization 96%
- Regulation of neuropathic pain by microglial Orai1 channels 95%
- Astrocytic TDP-43 dysregulation impairs memory by modulating antiviral pathways and interferon-inducible chemokines 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.