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稳定同位素示踪揭示了老年雄性小鼠海马切片中细胞能量和谷氨酸代谢的紊乱。

Stable isotope tracing reveals disturbed cellular energy and glutamate metabolism in hippocampal slices of aged male mice.

机构信息

Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, 2100 Copenhagen, Denmark.

Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, 2100 Copenhagen, Denmark.

出版信息

Neurochem Int. 2023 Dec;171:105626. doi: 10.1016/j.neuint.2023.105626. Epub 2023 Oct 12.

Abstract

Neurons and astrocytes work in close metabolic collaboration, linking neurotransmission to brain energy and neurotransmitter metabolism. Dysregulated energy metabolism is a hallmark of the aging brain and may underlie the progressive age-dependent cognitive decline. However, astrocyte and neurotransmitter metabolism remains understudied in aging brain research. In particular, how aging affects metabolism of glutamate, being the primary excitatory neurotransmitter, is still poorly understood. Here we investigated critical aspects of cellular energy metabolism in the aging male mouse hippocampus using stable isotope tracing in vitro. Metabolism of [U-C]glucose demonstrated an elevated glycolytic capacity of aged hippocampal slices, whereas oxidative [U-C]glucose metabolism in the TCA cycle was significantly reduced with aging. In addition, metabolism of [1,2-C]acetate, reflecting astrocyte energy metabolism, was likewise reduced in the hippocampal slices of old mice. In contrast, uptake and subsequent metabolism of [U-C]glutamate was elevated, suggesting increased capacity for cellular glutamate handling with aging. Finally, metabolism of [N]glutamate was maintained in the aged slices, demonstrating sustained glutamate nitrogen metabolism. Collectively, this study reveals fundamental alterations in cellular energy and neurotransmitter metabolism in the aging brain, which may contribute to age-related hippocampal deficits.

摘要

神经元和星形胶质细胞在代谢上密切合作,将神经传递与大脑能量和神经递质代谢联系起来。能量代谢失调是衰老大脑的一个标志,可能是导致与年龄相关的认知能力逐渐下降的原因。然而,星形胶质细胞和神经递质代谢在衰老大脑研究中仍然研究不足。特别是,衰老如何影响谷氨酸代谢,谷氨酸作为主要的兴奋性神经递质,仍然知之甚少。在这里,我们使用体外稳定同位素示踪法研究了雄性老年小鼠海马体中的细胞能量代谢的关键方面。[U-C]葡萄糖的代谢表明衰老海马切片的糖酵解能力升高,而三羧酸循环中的氧化[U-C]葡萄糖代谢随着衰老而显著降低。此外,[1,2-C]乙酸的代谢,反映了星形胶质细胞的能量代谢,在老年小鼠的海马切片中也减少了。相比之下,[U-C]谷氨酸的摄取和随后的代谢增加,表明随着年龄的增长,细胞谷氨酸处理能力增强。最后,[N]谷氨酸的代谢在衰老的切片中得以维持,表明谷氨酸氮代谢持续。总的来说,这项研究揭示了衰老大脑中细胞能量和神经递质代谢的基本变化,这可能导致与年龄相关的海马体缺陷。

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