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甜菜碱——大脑的黑暗骑士。

Betaine-The dark knight of the brain.

作者信息

Bhatt Manan, Di Iacovo Angela, Romanazzi Tiziana, Roseti Cristina, Bossi Elena

机构信息

Department of Biotechnology and Life Sciences, Laboratory of Cellular and Molecular Physiology, University of Insubria, Varese, Italy.

School of Experimental and Translational Medicine, University of Insubria, Varese, Italy.

出版信息

Basic Clin Pharmacol Toxicol. 2023 Nov;133(5):485-495. doi: 10.1111/bcpt.13839. Epub 2023 Feb 9.

Abstract

The role of betaine in the liver and kidney has been well documented, even from the cellular and molecular point of view. Despite literature reporting positive effects of betaine supplementation in Alzheimer's, Parkinson's and schizophrenia, the role and function of betaine in the brain are little studied and reviewed. Beneficial effects of betaine in neurodegeneration, excitatory and inhibitory imbalance and against oxidative stress in the central nervous system (CNS) have been collected and analysed to understand the main role of betaine in the brain. There are many 'dark' aspects needed to complete the picture. The understanding of how this osmolyte is transported across neuron and glial cells is also controversial, as the expression levels and functioning of the known protein capable to transport betaine expressed in the brain, betaine-GABA transporter 1 (BGT-1), is itself not well clarified. The reported actions of betaine beyond BGT-1 related to neuronal degeneration and memory impairment are the focus of this work. With this review, we underline the scarcity of detailed molecular and cellular information about betaine action. Consequently, the requirement of detailed focus on and study of the interaction of this molecule with CNS components to sustain the therapeutic use of betaine.

摘要

甜菜碱在肝脏和肾脏中的作用已有充分记载,甚至从细胞和分子角度来看也是如此。尽管有文献报道补充甜菜碱对阿尔茨海默病、帕金森病和精神分裂症有积极作用,但甜菜碱在大脑中的作用和功能却鲜有研究和综述。已收集并分析了甜菜碱在神经退行性变、兴奋性和抑制性失衡以及对抗中枢神经系统(CNS)氧化应激方面的有益作用,以了解甜菜碱在大脑中的主要作用。要全面了解还存在许多“未知”方面。对于这种渗透剂如何跨神经元和神经胶质细胞转运的理解也存在争议,因为大脑中已知的能够转运甜菜碱的蛋白质——甜菜碱 - GABA转运体1(BGT - 1)的表达水平和功能本身就尚未完全阐明。本文的重点是报道的甜菜碱超出与BGT - 1相关的神经元变性和记忆障碍的作用。通过这篇综述,我们强调了关于甜菜碱作用的详细分子和细胞信息的匮乏。因此,需要详细关注和研究该分子与中枢神经系统成分的相互作用,以支持甜菜碱的治疗应用。

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