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催产素能神经元的激活增强了小鼠的蛰伏状态。

Activation of oxytocinergic neurons enhances torpor in mice.

作者信息

Hare Maia T, Carter Matthew E, Swoap Steven J

机构信息

Department of Biology, Williams College, Williamstown, MA, 01267, USA.

Zucker School of Medicine at Hofstra/Northwell, 500 Hofstra Blvd, Hempstead, NY, 11549, USA.

出版信息

J Comp Physiol B. 2024 Feb;194(1):95-104. doi: 10.1007/s00360-023-01528-y. Epub 2024 Jan 3.

Abstract

Mus musculus enters a torpid state in response to caloric restriction in sub-thermoneutral ambient temperatures. This torpid state is characterized by an adaptive and controlled decrease in metabolic rate, heart rate, body temperature, and activity. Previous research has identified the paraventricular nucleus (PVN) within the hypothalamus, a region containing oxytocin neurons, as a location that is active during torpor onset. We hypothesized that oxytocin neurons within the PVN are part of this neural circuit and that activation of oxytocin neurons would deepen and lengthen torpor bouts. We report that activation of oxytocin neurons alone is not sufficient to induce a torpor-like state in the fed mouse, with no significant difference in body temperature or heart rate upon activation of oxytocin neurons. However, we found that activation of oxytocin neurons prior to the onset of daily torpor both deepens and lengthens the subsequent bout, with a 1.7 ± 0.4 °C lower body temperature and a 135 ± 32 min increase in length. We therefore conclude that oxytocin neurons are involved in the neural circuitry controlling daily torpor in the mouse.

摘要

小家鼠在低于热中性环境温度下因热量限制而进入蛰伏状态。这种蛰伏状态的特征是代谢率、心率、体温和活动出现适应性且可控的降低。先前的研究已确定下丘脑内的室旁核(PVN),一个含有催产素神经元的区域,是蛰伏开始时活跃的部位。我们假设PVN内的催产素神经元是这个神经回路的一部分,并且催产素神经元的激活会加深和延长蛰伏期。我们报告称,单独激活催产素神经元不足以在进食的小鼠中诱导出类似蛰伏的状态,激活催产素神经元后体温或心率无显著差异。然而,我们发现,在每日蛰伏开始前激活催产素神经元会加深并延长随后的蛰伏期,体温降低1.7±0.4°C,时长增加135±32分钟。因此,我们得出结论,催产素神经元参与了控制小鼠每日蛰伏的神经回路。

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