TY - JOUR
T1 - Oxytocin receptor neurons in the paraventricular thalamus as a nexus for social behaviour and fear
AU - Yamamuro, Kazuhiko
AU - Ikehara, Minobu
AU - Noriyama, Yuki
AU - Okuda, Mamiko
AU - Okumura, Kazuki
AU - Matsuoka, Kiwamu
AU - Kashida, Natsuko
AU - Ishida, Rio
AU - Takeda, Tsutomu
AU - Toritsuka, Michihiro
AU - Ochi, Tomoko
AU - Miyasaka, Toshiteru
AU - Tai, Yumi
AU - Tatsumi, Kouko
AU - Hattori, Tsuyoshi
AU - Tanaka, Toshihiro
AU - Saito, Yasuhiko
AU - Iwata, Nakao
AU - Makinodan, Manabu
N1 - Publisher Copyright:
© The Author(s) 2026. Published by Oxford University Press on behalf of the Guarantors of Brain. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
PY - 2026/6
Y1 - 2026/6
N2 - Oxytocin has been implicated in regulating social behaviour and emotional responses; however, the underlying neural circuits remain incompletely understood. Neurons expressing oxytocin receptors (OTRs) in the paraventricular thalamus (PVT) are emerging as a potential modulator of these processes. In this study, we investigated the specific role of OTR-expressing PVT neurons in sociability and fear-related behaviours. Using chemogenetic approaches, we found that bidirectional manipulation of these neurons significantly modulated social behaviour and fear extinction in mice. Inhibition of OTR-expressing PVT neurons impaired sociability and fear extinction, whereas activation selectively enhanced early extinction learning without affecting sociability. Electrophysiological analyses revealed that oxytocin increases tonic firing in PVT neurons, suggesting a mechanism for heightened excitability. In contrast, manipulation of OTR-expressing neurons in the medial prefrontal cortex had no effect on sociability. In a complementary human dataset, salivary oxytocin levels were modestly associated with thalamic microstructure and autism spectrum disorder trait severity. Although the experimental paradigms differed across species, these findings collectively suggest that OTR-expressing PVT neurons may contribute to social and emotional behaviours through circuit-specific mechanisms. These findings may have implications for psychiatric conditions such as autism spectrum disorder and anxiety. Future translational studies should explore the therapeutic potential of targeting oxytocin-related PVT function to treat social and fear-related deficits. Overall, these findings advance our understanding of the role of oxytocin in brain function and its relevance to mental health.
AB - Oxytocin has been implicated in regulating social behaviour and emotional responses; however, the underlying neural circuits remain incompletely understood. Neurons expressing oxytocin receptors (OTRs) in the paraventricular thalamus (PVT) are emerging as a potential modulator of these processes. In this study, we investigated the specific role of OTR-expressing PVT neurons in sociability and fear-related behaviours. Using chemogenetic approaches, we found that bidirectional manipulation of these neurons significantly modulated social behaviour and fear extinction in mice. Inhibition of OTR-expressing PVT neurons impaired sociability and fear extinction, whereas activation selectively enhanced early extinction learning without affecting sociability. Electrophysiological analyses revealed that oxytocin increases tonic firing in PVT neurons, suggesting a mechanism for heightened excitability. In contrast, manipulation of OTR-expressing neurons in the medial prefrontal cortex had no effect on sociability. In a complementary human dataset, salivary oxytocin levels were modestly associated with thalamic microstructure and autism spectrum disorder trait severity. Although the experimental paradigms differed across species, these findings collectively suggest that OTR-expressing PVT neurons may contribute to social and emotional behaviours through circuit-specific mechanisms. These findings may have implications for psychiatric conditions such as autism spectrum disorder and anxiety. Future translational studies should explore the therapeutic potential of targeting oxytocin-related PVT function to treat social and fear-related deficits. Overall, these findings advance our understanding of the role of oxytocin in brain function and its relevance to mental health.
KW - fear
KW - neural circuits
KW - oxytocin
KW - paraventricular thalamus
KW - social behaviour
UR - https://www.scopus.com/pages/publications/105041260258
UR - https://www.scopus.com/pages/publications/105041260258#tab=citedBy
U2 - 10.1093/brain/awaf421
DO - 10.1093/brain/awaf421
M3 - Article
C2 - 41861062
AN - SCOPUS:105041260258
SN - 0006-8950
VL - 149
SP - 2151
EP - 2165
JO - Brain
JF - Brain
IS - 6
ER -