由阿尔多素诱导的盐食欲需要HSD2神经元
Silvia Gasparini1, Lila Peltekian1, Miriam C McDonough2
1Department of Neurology.
JCI insight
|October 24, 2024
概括
科学家们确定了特定的大脑神经元,这些神经元控制由阿尔多素驱动的盐渴望. 准这些神经元可以帮助管理高血压和相关的健康风险.
科学领域:
- 神经科学是一个神经科学.
- 内分泌学 在内分泌学.
- 生理学 生理学 生理学
背景情况:
- 过度的阿尔多素生产与心血管和神经系统疾病有关.
- 阿尔多激素会影响平衡和食欲,但大脑的机制尚未完全理解.
- 11-β-基类固醇脱酶2 (HSD2) 对于神经元中的阿尔多激素信号传递至关重要.
研究的目的:
- 为了识别人类大脑中的HSD2神经元.
- 用小鼠模型研究HSD2神经元在阿尔多素诱导的盐摄入中的作用.
- 为了确定HSD2神经元是否对盐食欲至关重要.
主要方法:
- 在人类大脑组织中识别HSD2神经元.
- 使用食操纵的小鼠模型.
- 使用化学遗传学来刺激HSD2神经元.
- 为了功能评估,对HSD2神经元进行基因切除.
主要成果:
- 在小鼠中,饮食中缺乏会增加阿尔多素,盐摄入量和HSD2神经元活动.
- 对HSD2神经元的化学遗传刺激特别增强了盐的摄入量.
- 发现HSD2神经元对于阿尔多素驱动的盐消费是必要的.
结论:
- 大脑中的HSD2神经元被识别出来,它们在调节盐食欲方面起着至关重要的作用.
- 这些发现为控制食欲的神经回路提供了洞察力.
- HSD2神经元是管理摄入量和相关健康状况的潜在治疗标.
更多相关视频
08:07Simultaneous Detection of c-Fos Activation from Mesolimbic and Mesocortical Dopamine Reward Sites Following Naive Sugar and Fat Ingestion in Rats
Published on: August 24, 2016
9.0K
10:28Evaluation of Vascular Control Mechanisms Utilizing Video Microscopy of Isolated Resistance Arteries of Rats
Published on: December 5, 2017
9.3K
相关概念视频
Antihypertensive Drugs: Potassium-Sparing Diuretics
464
Liddle syndrome is a genetically inherited form of hypertension characterized by the overactivity of epithelial sodium channels in the nephron, the functional unit of the kidney. This heightened activity leads to increased sodium reabsorption and excessive excretion of potassium. To counteract this, potassium-sparing diuretics such as amiloride are used. They function by blocking these sodium channels, thereby reducing the influx of sodium into the epithelial cells and minimizing the loss of...
464
Endocrine Signaling
64.0K
Endocrine cells produce hormones to communicate with remote target cells found in other organs. The hormone reaches these distant areas using the circulatory system. This exposes the whole organism to the hormone but only those cells expressing hormone receptors or target cells are affected. Thus, endocrine signaling induces slow responses from its target cells but these effects also last longer.
64.0K
Regulation of Food Intake
199
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...
199
Reabsorption and Secretion in the DCT and Collecting Duct
930
The early phase of the DCT manages the reabsorption of approximately 10-15% of filtered water, 5–10% of filtered sodium, and 5–10% of filtered chloride. This process is facilitated by Na+–Cl− symporters in apical membranes and sodium-potassium pumps, as well as Cl− leakage channels in basolateral membranes. The early DCT also stands out as a site where parathyroid hormone (PTH) stimulates calcium reabsorption, depending on the body's requirements.
The distal...
The distal...
930
Hormonal Regulation
33.0K
The renin-aldosterone system is an endocrine system which guides the renal absorption of water and electrolytes, thus managing blood pressure and osmoregulation. Activation of the system begins in the kidneys with a small cluster of cells adjacent to the afferent and efferent blood vessels of the renal corpuscle. As the nephrons are filtering blood, juxtaglomerular cells monitor blood pressure. If they detect a decrease in pressure, they release the hormone renin into the bloodstream.
33.0K
Regulation of Sodium and Potassium
424
The regulation of sodium and potassium ion concentrations in the human body is a complex process governed primarily by hormones such as aldosterone, antidiuretic hormone (ADH), and atrial natriuretic peptide (ANP).
Sodium Regulation
Sodium ions make up approximately 90% of extracellular cations, with a normal blood plasma concentration of 136–148 mEq/L. A decrease in blood volume and pressure triggers the release of renin from granular cells in the juxtaglomerular complex (JGC), primarily...
Sodium Regulation
Sodium ions make up approximately 90% of extracellular cations, with a normal blood plasma concentration of 136–148 mEq/L. A decrease in blood volume and pressure triggers the release of renin from granular cells in the juxtaglomerular complex (JGC), primarily...
424
