Neurotensin in the extended amygdala maintains wakefulness in novel environments

C Chi Jung Hung (Stress Recognition and Response, Research Institute of Environmental Medicine, Nagoya University) S Shuhei Ueda (Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University) S Sheikh Mizanur Rahaman (Stress Recognition and Response, Research Institute of Environmental Medicine, Nagoya University) M Mikiyasu Yamamoto (Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University) J Jiahui Li N Noriaki Fukatsu (Department of Anatomy and Molecular Cell Biology, Nagoya University Graduate School of Medicine) H Haruhiko Bito (Department of Neurochemistry, The University of Tokyo Graduate School of Medicine) H Hiroshi Yamaguchi (Division of Multicellular Circuit Dynamics, National Institute for Physiological Sciences) A Akihiro Yamanaka (Chinese Institute for Brain Research) S Sayaka Takemoto-Kimura (Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University) D Daisuke Ono (Stress Recognition and Response, Research Institute of Environmental Medicine, Nagoya University)

Abstract

Animals remain awake in unfamiliar environments to assess potential safety threats, a process involving changes in neuronal activity within sleep–wake regulatory brain regions. However, the specific circuits and neurotransmitters involved remain poorly understood. Here, we show that neurotensin (NTS) peptides in corticotropin-releasing factor (CRF) neurons of the lateral part of the interstitial nucleus of the posterior limb of the anterior commissure (IPACL) play a key role in maintaining wakefulness in response to environmental changes. Activation of IPACL CRF neurons increased wakefulness, whereas their inhibition or deletion of NTS reduced wakefulness in novel environments. These neurons are activated in response to exposure to a novel environment and project primarily to the substantia nigra pars reticulata (SNr) and release NTS, which modulates wakefulness. These findings suggest that NTS signaling from IPACL CRF neurons to the SNr is essential for sustaining wakefulness in unfamiliar or changing environments.

Article Details

Volume / Issue Vol. 123, Issue 6
Published February 10, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (11)

C

Chi Jung Hung

Stress Recognition and Response, Research Institute of Environmental Medicine, Nagoya University

S

Shuhei Ueda

Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University

S

Sheikh Mizanur Rahaman

Stress Recognition and Response, Research Institute of Environmental Medicine, Nagoya University

M

Mikiyasu Yamamoto

Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University

J

Jiahui Li

N

Noriaki Fukatsu

Department of Anatomy and Molecular Cell Biology, Nagoya University Graduate School of Medicine

H

Haruhiko Bito

Department of Neurochemistry, The University of Tokyo Graduate School of Medicine

H

Hiroshi Yamaguchi

Division of Multicellular Circuit Dynamics, National Institute for Physiological Sciences

A

Akihiro Yamanaka

Chinese Institute for Brain Research

S

Sayaka Takemoto-Kimura

Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University

D

Daisuke Ono

Stress Recognition and Response, Research Institute of Environmental Medicine, Nagoya University