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脂肪酸在中枢神经系统能量代谢中的作用

Fatty acids in energy metabolism of the central nervous system.

作者信息

Panov Alexander, Orynbayeva Zulfiya, Vavilin Valentin, Lyakhovich Vyacheslav

机构信息

Institute of Molecular Biology and Biophysics, Siberian Division of the Russian Academy of Medical Sciences (SB RAMS), 2 Timakova st., Novosibirsk 630117, Russia.

Department of Surgery, Drexel University College of Medicine, Philadelphia, PA, USA.

出版信息

Biomed Res Int. 2014;2014:472459. doi: 10.1155/2014/472459. Epub 2014 May 4.

Abstract

In this review, we analyze the current hypotheses regarding energy metabolism in the neurons and astroglia. Recently, it was shown that up to 20% of the total brain's energy is provided by mitochondrial oxidation of fatty acids. However, the existing hypotheses consider glucose, or its derivative lactate, as the only main energy substrate for the brain. Astroglia metabolically supports the neurons by providing lactate as a substrate for neuronal mitochondria. In addition, a significant amount of neuromediators, glutamate and GABA, is transported into neurons and also serves as substrates for mitochondria. Thus, neuronal mitochondria may simultaneously oxidize several substrates. Astrocytes have to replenish the pool of neuromediators by synthesis de novo, which requires large amounts of energy. In this review, we made an attempt to reconcile β-oxidation of fatty acids by astrocytic mitochondria with the existing hypothesis on regulation of aerobic glycolysis. We suggest that, under condition of neuronal excitation, both metabolic pathways may exist simultaneously. We provide experimental evidence that isolated neuronal mitochondria may oxidize palmitoyl carnitine in the presence of other mitochondrial substrates. We also suggest that variations in the brain mitochondrial metabolic phenotype may be associated with different mtDNA haplogroups.

摘要

在本综述中,我们分析了目前关于神经元和星形胶质细胞能量代谢的假说。最近有研究表明,大脑总能量的20% 由脂肪酸的线粒体氧化提供。然而,现有的假说认为葡萄糖或其衍生物乳酸是大脑唯一的主要能量底物。星形胶质细胞通过为神经元线粒体提供乳酸作为底物,在代谢上支持神经元。此外,大量的神经递质,如谷氨酸和γ-氨基丁酸,被转运到神经元中,也作为线粒体的底物。因此,神经元线粒体可能同时氧化多种底物。星形胶质细胞必须通过从头合成来补充神经递质池,这需要大量能量。在本综述中,我们试图使星形胶质细胞线粒体的脂肪酸β氧化与现有的有氧糖酵解调节假说相协调。我们认为,在神经元兴奋的情况下,这两种代谢途径可能同时存在。我们提供了实验证据,表明分离出的神经元线粒体在存在其他线粒体底物的情况下可以氧化棕榈酰肉碱。我们还认为,脑线粒体代谢表型的变化可能与不同的线粒体DNA单倍群有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df36/4026875/7b0aa30bb370/BMRI2014-472459.001.jpg

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