2020
DOI: 10.1016/j.bbi.2019.12.007
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In vivo characterization of functional states of cortical microglia during peripheral inflammation

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Cited by 41 publications
(35 citation statements)
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“…Inflammation can also evoke greater spontaneous microglial calcium signaling and modify how microglia respond to the extracellular environment. When administered peripherally, LPS dramatically increases the proportion of microglia exhibiting spontaneous calcium activity (Pozner et al, 2015; Riester et al, 2020). Increased microglial calcium signaling depends on inflammasome activity (NLRP3), but it is unclear whether this occurs through direct IL‐1β signaling to microglia (a potential endocrine signal to IL‐1R) or a broader heightening of the inflammatory state (Riester et al, 2020).…”
Section: The Emerging Role Of Microglial Calcium Signaling During Shifts In Homeostasismentioning
confidence: 99%
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“…Inflammation can also evoke greater spontaneous microglial calcium signaling and modify how microglia respond to the extracellular environment. When administered peripherally, LPS dramatically increases the proportion of microglia exhibiting spontaneous calcium activity (Pozner et al, 2015; Riester et al, 2020). Increased microglial calcium signaling depends on inflammasome activity (NLRP3), but it is unclear whether this occurs through direct IL‐1β signaling to microglia (a potential endocrine signal to IL‐1R) or a broader heightening of the inflammatory state (Riester et al, 2020).…”
Section: The Emerging Role Of Microglial Calcium Signaling During Shifts In Homeostasismentioning
confidence: 99%
“…increases the proportion of microglia exhibiting spontaneous calcium activity (Pozner et al, 2015;Riester et al, 2020). Increased microglial calcium signaling depends on inflammasome activity (NLRP3), but it is unclear whether this occurs through direct IL-1β signaling to microglia (a potential endocrine signal to IL-1R) or a broader heightening of the inflammatory state (Riester et al, 2020). LPS can also alter how microglia utilize calcium signaling during injury.…”
Section: The First Context For Microglial Calcium Responses: Injury and Inflammationmentioning
confidence: 99%
“…These damageinduced Ca 2+ transients were mediated by activation of metabotropic purinergic receptors, which are highly expressed in microglia [46], as well as Ca 2+ release from the intracellular Ca 2+ stores [37]. Subsequent studies substantiated our hypothesis that abundant somatic Ca 2+ transients in microglia reflect pathological alterations in tissue homeostasis, e.g., aging [39,40], laser-induced focal brain injury [47], amyloid pathology [48], or peripheral inflammation [44,47]. Interestingly, the majority of Ca 2+ transients evoked by laser-induced brain injury occurred in the microglial processes only [47].…”
Section: Ca 2+ Signalingmentioning
confidence: 74%
“…Intracellular Ca 2+ signaling is actively involved into both sensor and effector functions of microglia [34,[43][44][45]. Due to technical reasons, however, it has long been challenging to study microglial Ca 2+ signaling in vivo.…”
Section: Ca 2+ Signalingmentioning
confidence: 99%
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