Response of Neuropeptides to Hunger Signals in Teleost.

IF 3.2 2区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Neuroendocrinology Pub Date : 2024-01-01 Epub Date: 2023-12-24 DOI:10.1159/000535611
Xiaozheng Yu, Jiaqi Li, Yixuan Guo, Yang Yu, Ran Cai, Benliang Chen, Minyao Chen, Caiyun Sun, Wensheng Li
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引用次数: 0

Abstract

Introduction: The perception of hunger is a complex physiological process that requires precise coordination between the central and peripheral tissues.

Methods: In this study, tilapia fasted for 24 h was chosen to establish a hunger model to study the mechanism of homeostasis recovery under the joint regulation of the central nervous system (CNS) and peripheral tissues.

Results: The gastric and intestinal contents of tilapia were predominantly depleted after a fasting period of 9 h and 24 h, respectively. The serum glucose level significantly decreased at the 9-h and 24-h fasting, respectively, and the glucokinase-dependent glucosensing mechanism in the liver was identified as well as the significant activation of phospho-AMPK. However, fasting for 24 h did not activate glucosensing mechanisms and AMPK signaling pathways in the hypothalamus. On the other hand, significant reductions were observed in the mRNA levels of the lipid synthesis-related genes fas and accα, and the serum triglyceride levels as well. The mRNA levels of npy, agrp, pomc, and cart in the hypothalamus fluctuated during the fasting period without significant differences. With in situ hybridization npy signals upregulated in the ventral zone of posterior periventricular nucleus after 24-h fasting, pomc signals enhanced in the lateral tuberal nucleus. Based on the serum metabolomic analysis, the levels of branched-chain amino acids, butyrate, and short-chain acylcarnitine decreased, while those of medium- and long-chain acylcarnitine increased.

Conclusion: Fasting for 24 h resulted in changes in npy and pomc signals within the hypothalamus and triggered the glucosensing mechanism in the liver of tilapia. This study is beneficial for elucidating the response of neuropeptides in the CNS to the changes of nutritional factors when hungry.

神经肽对鱼类饥饿信号的反应
简介饥饿感是一个复杂的生理过程,需要中枢和外周组织的精确协调:方法:本研究选择禁食24小时的罗非鱼建立饥饿模型,研究在中枢神经系统(CNS)和外周组织共同调节下平衡恢复的机制:结果:罗非鱼的胃肠内容物分别在禁食9小时和24小时后消耗殆尽。分别禁食 9 小时和 24 小时后,血清葡萄糖水平明显下降,肝脏中葡萄糖激酶依赖性葡萄糖传感机制以及磷酸-APK 被明显激活。然而,禁食 24 小时并没有激活下丘脑中的葡萄糖感应机制和 AMPK 信号通路。另一方面,观察到脂质合成相关基因 fas 和 accα 的 mRNA 水平以及血清甘油三酯水平明显下降。下丘脑中的 npy、agrp、pomc 和 cart 的 mRNA 水平在禁食期间有所波动,但无明显差异。通过原位杂交,24小时禁食后,下丘脑室周核腹侧区的npy信号上调,而外侧小管核的pomc信号增强。根据血清代谢组学分析,支链氨基酸、丁酸盐和短链酰基肉碱的水平下降,而中链和长链酰基肉碱的水平上升:结论:禁食 24 小时会导致下丘脑中的 npy 和 pomc 信号发生变化,触发罗非鱼肝脏中的葡萄糖感应机制。该研究有助于阐明饥饿时中枢神经系统内神经肽对营养因子变化的反应。
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来源期刊
Neuroendocrinology
Neuroendocrinology 医学-内分泌学与代谢
CiteScore
8.30
自引率
2.40%
发文量
50
审稿时长
6-12 weeks
期刊介绍: ''Neuroendocrinology'' publishes papers reporting original research in basic and clinical neuroendocrinology. The journal explores the complex interactions between neuronal networks and endocrine glands (in some instances also immunecells) in both central and peripheral nervous systems. Original contributions cover all aspects of the field, from molecular and cellular neuroendocrinology, physiology, pharmacology, and the neuroanatomy of neuroendocrine systems to neuroendocrine correlates of behaviour, clinical neuroendocrinology and neuroendocrine cancers. Readers also benefit from reviews by noted experts, which highlight especially active areas of current research, and special focus editions of topical interest.
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