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Chronic loss of inhibition in piriform cortex following brief, daily optogenetic stimulation.
Ryu, Brendan; Nagappan, Shivathmihai; Santos-Valencia, Fernando; Lee, Psyche; Rodriguez, Erica; Lackie, Meredith; Takatoh, Jun; Franks, Kevin M.
Afiliação
  • Ryu B; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Nagappan S; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Santos-Valencia F; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Lee P; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Rodriguez E; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Lackie M; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Takatoh J; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA.
  • Franks KM; Department of Neurobiology, Duke University Medical School, Durham, NC 27705, USA. Electronic address: franks@neuro.duke.edu.
Cell Rep ; 35(3): 109001, 2021 04 20.
Article em En | MEDLINE | ID: mdl-33882304
It is well established that seizures beget seizures, yet the cellular processes that underlie progressive epileptogenesis remain unclear. Here, we use optogenetics to briefly activate targeted populations of mouse piriform cortex (PCx) principal neurons in vivo. After just 3 or 4 days of stimulation, previously subconvulsive stimuli trigger massive, generalized seizures. Highly recurrent allocortices are especially prone to "optokindling." Optokindling upsets the balance of recurrent excitation and feedback inhibition. To understand how this balance is disrupted, we then selectively reactivate the same neurons in vitro. Surprisingly, we find no evidence of heterosynaptic potentiation; instead, we observe a marked, pathway-specific decrease in feedback inhibition. We find no loss of inhibitory interneurons; rather, decreased GABA synthesis in feedback inhibitory neurons appears to underlie weakened inhibition. Optokindling will allow precise identification of the molecular processes by which brain activity patterns can progressively and pathologically disrupt the balance of cortical excitation and inhibition.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Convulsões / Sinapses / Estimulação Elétrica / Retroalimentação Sensorial / Córtex Piriforme / Ácido gama-Aminobutírico Limite: Animals Idioma: En Revista: Cell Rep Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Convulsões / Sinapses / Estimulação Elétrica / Retroalimentação Sensorial / Córtex Piriforme / Ácido gama-Aminobutírico Limite: Animals Idioma: En Revista: Cell Rep Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos
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