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Shigetomi, E.

Publications and source records attributed to Shigetomi, E..

2 recordsLinked to original sources

A fast genetically encoded fluorescent sensor for faithful in vivo acetylcholine detection in mice, fish, worms and flies

Here we design and optimize a genetically encoded fluorescent indicator, iAChSnFR, for the ubiquitous neurotransmitter acetylcholine, based on a bacterial periplasmic binding protein. iAChSnFR shows large fluorescence changes, rapid rise and decay kinetics, and insensitivity to most cholinergic drugs. iAChSnFR revealed large transients in a variety of slice and in vivo preparations in mouse, fish, fly and worm. iAChSnFR will be useful for the study of acetylcholine in all animals.

neuroscience

Reactive astrocyte-driven epileptogenesis is induced by microglia initially activated following status epilepticus

Extensive activation of glial cells during a latent period has been well documented in various animal models of epilepsy; however, it remains unknown whether such glial activation is capable of promoting epileptogenesis. Here, we show that temporally distinct activation profiles of microglia and astrocytes collaboratively contribute to epileptogenesis in a drug-induced status epilepticus model. We found that reactive microglia appear first, followed by reactive astrocytes and increased susceptibility to seizures. Pharmacological intervention against microglial activation reduces astrogliosis, aberrant astrocyte Ca2+ signaling, and seizure susceptibility. Reactive astrocytes exhibit larger Ca2+ signals mediated by IP3R2, whereas deletion of this type of Ca2+ signaling reduces seizure susceptibility after status epilepticus. Together, our findings indicate that the sequential activation of glial cells constitutes a cause of epileptogenesis after status epilepticus.

neuroscience