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胰岛素样生长因子I的神经生物学:从神经保护到脑状态调节。

The neurobiology of insulin-like growth factor I: From neuroprotection to modulation of brain states.

作者信息

Nuñez A, Zegarra-Valdivia J, Fernandez de Sevilla D, Pignatelli J, Torres Aleman I

机构信息

Department of Anatomy, Histology and Neurosciences, Universidad Autónoma de Madrid, Madrid, Spain.

Achucarro Basque Center for Neuroscience, Leioa, Spain.

出版信息

Mol Psychiatry. 2023 Aug;28(8):3220-3230. doi: 10.1038/s41380-023-02136-6. Epub 2023 Jun 23.

Abstract

After decades of research in the neurobiology of IGF-I, its role as a prototypical neurotrophic factor is undisputed. However, many of its actions in the adult brain indicate that this growth factor is not only involved in brain development or in the response to injury. Following a three-layer assessment of its role in the central nervous system, we consider that at the cellular level, IGF-I is indeed a bona fide neurotrophic factor, modulating along ontogeny the generation and function of all the major types of brain cells, contributing to sculpt brain architecture and adaptive responses to damage. At the circuit level, IGF-I modulates neuronal excitability and synaptic plasticity at multiple sites, whereas at the system level, IGF-I intervenes in energy allocation, proteostasis, circadian cycles, mood, and cognition. Local and peripheral sources of brain IGF-I input contribute to a spatially restricted, compartmentalized, and timed modulation of brain activity. To better define these variety of actions, we consider IGF-I a modulator of brain states. This definition aims to reconcile all aspects of IGF-I neurobiology, and may provide a new conceptual framework in the design of future research on the actions of this multitasking neuromodulator in the brain.

摘要

经过数十年对IGF-I神经生物学的研究,其作为典型神经营养因子的作用是无可争议的。然而,它在成人大脑中的许多作用表明,这种生长因子不仅参与大脑发育或对损伤的反应。在对其在中枢神经系统中的作用进行三层评估后,我们认为在细胞水平上,IGF-I确实是一种真正的神经营养因子,在个体发育过程中调节所有主要类型脑细胞的生成和功能,有助于塑造大脑结构以及对损伤的适应性反应。在回路水平上,IGF-I在多个部位调节神经元兴奋性和突触可塑性,而在系统水平上,IGF-I干预能量分配、蛋白质稳态、昼夜节律、情绪和认知。大脑IGF-I输入的局部和外周来源有助于对大脑活动进行空间受限、分区且定时的调节。为了更好地定义这些多样的作用,我们认为IGF-I是大脑状态的调节剂。这一定义旨在协调IGF-I神经生物学的各个方面,并可能为设计关于这种多任务神经调节剂在大脑中作用的未来研究提供一个新的概念框架。

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