相关实验视频
Updated: Jun 14, 2025

03:48
Restraint to Induce Stress in Mice and Rats
Published on: December 6, 2024
1.2K
通过脑干神经Y神经元抑制压力的前进抑制
Yan Zhang1,2,3, Jiayi Shen4, Famin Xie1
1State Key Laboratory of Genetic Engineering, School of Life Sciences, Fudan University, Shanghai, China.
Nature communications
|August 31, 2024
概括
研究人员在大脑中发现了新的神经Y (NPY) 神经元,这些神经元有助于抵抗压力. 激活这些NPY神经元可以减少焦虑和压力反应,提供潜在的治疗点.
科学领域:
- 神经科学是一个神经科学.
- 行为神经科学 行为神经科学
背景情况:
- 抗压力对哺乳动物健康至关重要.
- 大脑抵抗压力和预防过度反应的机制尚未完全理解.
研究的目的:
- 为了确定参与抗压力的新型神经群体.
- 为了研究神经Y (NPY) 神经元在背部拉菲核和腹侧周水管灰 (DRN/vlPAG) 在调节应激反应中的作用.
主要方法:
- 在DRN/vlPAG中识别了一个新的NPY神经元群.
- 通过压力刺激来评估神经元的激活.
- 在雄性小鼠中操纵NPYDRN/vlPAG神经元活动 (抑制和激活).
- 评估行为反应,包括焦虑和养行为.
- 分析神经投射到副腹腔体核 (PVT) 和侧下垂体区域 (LH) 的神经投射.
主要成果:
- NPYDRN/vlPAG神经元被压力迅速激活.
- 抑制NPYDRN/vlPAG神经元会使压力诱导的低食症和焦虑症恶化.
- 激活NPYDRN/vlPAG神经元可以减轻急性压力效应,并传递积极的价值.
- 这些神经元投射到PVT和LH,产生协同的抗焦虑作用.
结论:
- 发现了一种用于抗压力的新型前抑制神经机制,涉及NPYDRN/vlPAG神经元.
- NPYDRN/vlPAG神经元代表了与压力相关疾病的潜在治疗点.
相关概念视频
The Sympathetic Nervous System
94.6K
Overview
94.6K
Hypothalamic-Pituitary Axis
59.7K
The response to stress—be it physical or psychological, acute or chronic—involves activation of the Hypothalamic-Pituitary-Adrenal (HPA) axis. The HPA axis is part of the neuroendocrine system because it involves both neuronal and hormonal communication. Its function is to regulate homeostatic systems—metabolic, cardiovascular, and immune—providing the necessary means to respond to a stressor.
59.7K
Physiological Foundation of Stress
52
Stress triggers a coordinated physiological response involving the sympathetic nervous system (SNS) and the hypothalamic-pituitary-adrenal (HPA) axis. This dual activation ensures that the body is prepared for both immediate and prolonged stress management. The process begins with the perception of a stressor. This initial phase activates the SNS, leading to the rapid release of adrenaline (epinephrine) from the adrenal glands.
Role of the Sympathetic Nervous System
Adrenaline triggers the...
Role of the Sympathetic Nervous System
Adrenaline triggers the...
52
Regulation of Food Intake
205
Short-term regulation of food intake primarily involves neural signals from the gastrointestinal (GI) tract, blood nutrient levels, and GI tract hormones. Communication between the gut and brain via vagal nerve fibers plays a significant role in evaluating the contents of the gut. Clinical studies have shown that protein ingestion produces a more prolonged response in these nerve fibers compared to an equivalent amount of glucose. Additionally, the activation of stretch receptors caused by GI...
205
Sympathetic Activation
5.2K
The sympathetic division can influence tissues and organs by releasing norepinephrine at peripheral synapses and distributing epinephrine and norepinephrine through the bloodstream. In times of crisis or stress, sympathetic activation occurs, which is regulated by sympathetic centers in the hypothalamus. As a result, sympathetic activation prepares the body for physical exertion, rapid ATP production, and heightened alertness, allowing individuals to respond effectively to challenging or...
5.2K
Autonomic Nervous System
8.7K
The autonomic nervous system (ANS) is a critical component of the peripheral nervous system, primarily responsible for regulating involuntary bodily functions and maintaining homeostasis. It functions in tandem with the central nervous system (CNS) to seamlessly coordinate various physiological processes without the need for conscious control.
The ANS comprises two main divisions: the sympathetic and parasympathetic divisions. These divisions function antagonistically to maintain a dynamic...
The ANS comprises two main divisions: the sympathetic and parasympathetic divisions. These divisions function antagonistically to maintain a dynamic...
8.7K

