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通过细胞内氧化减少海马星形胶质细胞中 l-乳酸的释放,可增加小鼠对新奇事物的活动。

Reducing l-lactate release from hippocampal astrocytes by intracellular oxidation increases novelty induced activity in mice.

机构信息

School of Physiology, Pharmacology and Neuroscience, University of Bristol, Bristol, UK.

Department of Psychiatry and Behavioral Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

出版信息

Glia. 2021 May;69(5):1241-1250. doi: 10.1002/glia.23960. Epub 2021 Jan 5.

Abstract

Astrocytes are in control of metabolic homeostasis in the brain and support and modulate neuronal function in various ways. Astrocyte-derived l-lactate (lactate) is thought to play a dual role as a metabolic and a signaling molecule in inter-cellular communication. The biological significance of lactate release from astrocytes is poorly understood, largely because the tools to manipulate lactate levels in vivo are limited. We therefore developed new viral vectors for astrocyte-specific expression of a mammalianized version of lactate oxidase (LOx) from Aerococcus viridans. LOx expression in astrocytes in vitro reduced their intracellular lactate levels as well as the release of lactate to the extracellular space. Selective expression of LOx in astrocytes of the dorsal hippocampus in mice resulted in increased locomotor activity in response to novel stimuli. Our findings suggest that a localized decreased intracellular lactate pool in hippocampal astrocytes could contribute to greater responsiveness to environmental novelty. We expect that use of this molecular tool to chronically limit astrocytic lactate release will significantly facilitate future studies into the roles and mechanisms of intercellular lactate communication in the brain.

摘要

星形胶质细胞控制着大脑的代谢稳态,并通过多种方式支持和调节神经元功能。星形胶质细胞衍生的 l-乳酸(lactate)被认为在细胞间通讯中既是代谢分子又是信号分子,具有双重作用。星形胶质细胞释放乳酸的生物学意义尚不清楚,主要是因为体内操纵乳酸水平的工具有限。因此,我们开发了新的病毒载体,用于在星形胶质细胞中特异性表达来自 Aerococcus viridans 的哺乳动物乳酸氧化酶(LOx)的版本。体外星形胶质细胞中 LOx 的表达降低了其细胞内的乳酸水平以及向细胞外空间的乳酸释放。在小鼠背侧海马中的星形胶质细胞中选择性表达 LOx 导致对新刺激的运动活性增加。我们的研究结果表明,海马星形胶质细胞中局部减少的细胞内乳酸池可能有助于对环境新奇性的更大反应性。我们预计,使用这种分子工具来慢性限制星形胶质细胞的乳酸释放将极大地促进未来对脑内细胞间乳酸通讯的作用和机制的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ade/8576740/04a2cb8bc366/GLIA-69-1241-g004.jpg

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