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脑胰岛素:调节、作用机制及功能

Brain insulin: regulation, mechanisms of action and functions.

作者信息

Gerozissis Kyriaki

机构信息

Chercheur INSERM, UMR 7059 CNRS, Paris Cedex, France.

出版信息

Cell Mol Neurobiol. 2003 Feb;23(1):1-25. doi: 10.1023/a:1022598900246.

Abstract
  1. While many questions remained unanswered, it is now well documented that, contrary to earlier views, insulin is an important neuromodulator, contributing to neurobiological processes, in particular energy homeostasis and cognition. A specific role on cognitive functions related to feeding is proposed, and it is suggested that brain insulin from different sources might be involved in the above vital functions in health and disease. 2. A molecule identical to pancreatic insulin, and specific insulin receptors, are found widely distributed in the central nervous system networks related to feeding, reproduction, or cognition. 3. The actions of insulin in the central nervous system may be under both multilevel and multifactorial controls. The amount of blood insulin reaching the brain, brain insulin stores and secretion, potential local biosynthesis and degradation of the peptide, and insulin receptors and signal transduction can be affected by metabolic factors induced by nutrients, hormones, neurotransmitters, and regulatory peptides, peripherally or in the central nervous system. 4. Glucose and serotonin regulate insulin directly in the hypothalamus and may be of importance for its biological effects. Central mechanisms regulating glucose-induced insulin secretion show some analogy with the mechanisms operating in the pancreas. 5. A cross-talk between insulin and leptin receptors has been observed in the brain, and a regulation of central insulin actions, potentially via serotonin modulation, by leptin, galanin, melancortins, and neuropeptide Y (NPY) is suggested. 6. A more complete knowledge of the biological role of insulin in brain function and dysfunction, and of the regulatory mechanisms involved in these processes, constitutes a real advancement in the understanding of the pathophysiology of metabolic and mental diseases and could lead to important medical benefits.
摘要
  1. 尽管仍有许多问题未得到解答,但现在有充分的文献记载,与早期观点相反,胰岛素是一种重要的神经调质,对神经生物学过程有贡献,尤其是能量平衡和认知。有人提出胰岛素在与进食相关的认知功能中具有特定作用,并且不同来源的脑胰岛素可能参与健康和疾病状态下的上述重要功能。2. 一种与胰腺胰岛素相同的分子以及特定的胰岛素受体,广泛分布于与进食、生殖或认知相关的中枢神经系统网络中。3. 胰岛素在中枢神经系统中的作用可能受到多层次和多因素的控制。到达大脑的血液胰岛素量、脑胰岛素储备和分泌、该肽潜在的局部生物合成和降解,以及胰岛素受体和信号转导,都可能受到营养素、激素、神经递质和调节肽在周围或中枢神经系统中诱导的代谢因素的影响。4. 葡萄糖和血清素在下丘脑中直接调节胰岛素,这可能对其生物学效应很重要。调节葡萄糖诱导的胰岛素分泌的中枢机制与胰腺中的作用机制有一些相似之处。5. 已观察到大脑中胰岛素和瘦素受体之间存在相互作用,并且有人提出瘦素、甘丙肽、促黑素细胞皮质素和神经肽Y(NPY)可能通过血清素调节对中枢胰岛素作用进行调节。6. 更全面地了解胰岛素在脑功能和功能障碍中的生物学作用,以及这些过程中涉及的调节机制,是在理解代谢和精神疾病病理生理学方面的一项实际进展,可能会带来重要的医学益处。

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