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下丘脑穹窿周促肾上腺皮质激素释放因子-3神经元调节对潜在威胁刺激的防御反应。

Hypothalamic perifornical Urocortin-3 neurons modulate defensive responses to a potential threat stimulus.

作者信息

Horii-Hayashi Noriko, Nomoto Kensaku, Endo Nozomi, Yamanaka Akihiro, Kikusui Takefumi, Nishi Mayumi

机构信息

Department of Anatomy and Cell Biology, Nara Medical University, Kashihara, Nara 643-8521, Japan.

Companion Animal Research Laboratory, School of Veterinary Medicine, Azabu University, Sagamihara, Kanagawa 252-5201, Japan.

出版信息

iScience. 2020 Dec 9;24(1):101908. doi: 10.1016/j.isci.2020.101908. eCollection 2021 Jan 22.

Abstract

Defensive behaviors are evolved responses to threat stimuli, and a potential threat elicits risk assessment (RA) behavior. However, neural mechanisms underlying RA behavior are hardly understood. Urocortin-3 (Ucn3) is a member of corticotropin-releasing factor peptide family and here, we report that Ucn3 neurons in the hypothalamic perifornical area (PeFA) are involved in RA of a novel object, a potential threat stimulus, in mice. Histological and fiber photometry studies revealed that the activity of PeFA Ucn3 neurons was associated with novel object investigation involving the stretch-attend posture, a behavioral marker for RA. Chemogenetic activation of these neurons increased RA and burying behaviors toward a novel object without affecting anxiety and corticosterone levels. Ablation of these neurons caused the abnormal behaviors of gnawing and direct contacts with novel objects, especially in a home-cage. These results suggest that PeFA Ucn3 neurons modulate defensive responses to a potential threat stimulus.

摘要

防御行为是对威胁刺激的进化反应,潜在威胁会引发风险评估(RA)行为。然而,RA行为背后的神经机制却鲜为人知。尿皮质素3(Ucn3)是促肾上腺皮质激素释放因子肽家族的一员,在此我们报告,下丘脑穹窿周区(PeFA)的Ucn3神经元参与了小鼠对新物体(一种潜在威胁刺激)的RA过程。组织学和纤维光度学研究表明,PeFA Ucn3神经元的活动与涉及伸展-关注姿势(一种RA行为标记)的新物体探究有关。这些神经元的化学遗传激活增加了对新物体的RA和掩埋行为,而不影响焦虑和皮质酮水平。这些神经元的消融导致了啃咬和直接接触新物体的异常行为,尤其是在笼内。这些结果表明,PeFA Ucn3神经元调节对潜在威胁刺激的防御反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73e7/7770982/83e82531345f/fx1.jpg

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