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Neocortical long-range inhibition promotes cortical synchrony and sleep.
Ratliff, Jacob M; Terral, Geoffrey; Lutzu, Stefano; Heiss, Jaime; Mota, Julie; Stith, Bianca; Lechuga, Arenski Vazquez; Ramakrishnan, Charu; Fenno, Lief E; Daigle, Tanya; Deisseroth, Karl; Zeng, Hongkui; Ngai, John; Tasic, Bosiljka; Sjulson, Lucas; Rudolph, Stephanie; Kilduff, Thomas S; Batista-Brito, Renata.
Afiliação
  • Ratliff JM; Albert Einstein College of Medicine, New York City, NY, United States.
  • Terral G; Albert Einstein College of Medicine, New York City, NY, United States.
  • Lutzu S; Albert Einstein College of Medicine, New York City, NY, United States.
  • Heiss J; Biosciences Division, SRI International, Menlo Park, CA 94025, United States.
  • Mota J; Albert Einstein College of Medicine, New York City, NY, United States.
  • Stith B; Albert Einstein College of Medicine, New York City, NY, United States.
  • Lechuga AV; Albert Einstein College of Medicine, New York City, NY, United States.
  • Ramakrishnan C; Stanford University, Stanford, United States.
  • Fenno LE; The University of Texas at Austin, Austin, TX, United States.
  • Daigle T; Allen Institute for Brain Science, Seattle, WA, United States.
  • Deisseroth K; Stanford University, Stanford, United States.
  • Zeng H; Allen Institute for Brain Science, Seattle, WA, United States.
  • Ngai J; National Institute of Neurological Disease and Stroke, Bethesda, MD, United States.
  • Tasic B; Allen Institute for Brain Science, Seattle, WA, United States.
  • Sjulson L; Albert Einstein College of Medicine, New York City, NY, United States.
  • Rudolph S; Albert Einstein College of Medicine, New York City, NY, United States.
  • Kilduff TS; Biosciences Division, SRI International, Menlo Park, CA 94025, United States.
  • Batista-Brito R; Albert Einstein College of Medicine, New York City, NY, United States.
bioRxiv ; 2024 Jun 23.
Article em En | MEDLINE | ID: mdl-38948753
ABSTRACT
Behavioral states such as sleep and wake are highly correlated with specific patterns of rhythmic activity in the cortex. During low arousal states such as slow wave sleep, the cortex is synchronized and dominated by low frequency rhythms coordinated across multiple regions. Although recent evidence suggests that GABAergic inhibitory neurons are key players in cortical state modulation, the in vivo circuit mechanisms coordinating synchronized activity among local and distant neocortical networks are not well understood. Here, we show that somatostatin and chondrolectin co-expressing cells (Sst-Chodl cells), a sparse and unique class of neocortical inhibitory neurons, are selectively active during low arousal states and are largely silent during periods of high arousal. In contrast to other neocortical inhibitory neurons, we show these neurons have long-range axons that project across neocortical areas. Activation of Sst-Chodl cells is sufficient to promote synchronized cortical states characteristic of low arousal, with increased spike co-firing and low frequency brain rhythms, and to alter behavioral states by promoting sleep. Contrary to the prevailing belief that sleep is exclusively driven by subcortical mechanisms, our findings reveal that these long-range inhibitory neurons not only track changes in behavioral state but are sufficient to induce both sleep-like cortical states and sleep behavior, establishing a crucial circuit component in regulating behavioral states.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article