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培养的小脑和新皮质神经元中神经活性氨基酸的稳态受环境线索影响。

Homeostasis of neuroactive amino acids in cultured cerebellar and neocortical neurons is influenced by environmental cues.

作者信息

Waagepetersen Helle, Melø Torun, Schousboe Arne, Sonnewald Ursula

机构信息

Department of Pharmacology, Danish University of Pharmaceutical Sciences, DK-2100 Copenhagen, Denmark.

出版信息

J Neurosci Res. 2005;79(1-2):97-105. doi: 10.1002/jnr.20351.

Abstract

Neuronal function is highly influenced by the extracellular environment. To study the effect of the milieu on neurons from cerebellum and neocortex, cells from these brain areas were cultured under different conditions. Two sets of cultures, one neocortical and one cerebellar neurons, were maintained in media containing [U-(13)C]glucose for 8 days at initial concentrations of 12 and 28 mM glucose, respectively. Other sets of cultures (8 days in vitro) maintained in a medium containing initially 12 mM glucose were incubated subsequently for 4 hr either by addition of [U-(13)C]glucose to the culture medium (final concentration 3 mM) or by changing to fresh medium containing [U-(13)C]glucose (3 mM) but without glutamine and fetal calf serum. (13)C Nuclear magnetic resonance (NMR) spectra revealed extensive gamma-aminobutyric acid (GABA) synthesis in both cultured neocortical and cerebellar neurons after maintenance in medium containing [U-(13)C]glucose for 8 days, whereas no aspartate labeling was observed in these spectra. Mass spectrometry analysis, however, revealed high labeling intensity of aspartate, which was equal in the two types of neurons. Addition of [U-(13)C]glucose (4 hr) on Day 8 in culture led to a similar extent of labeling of GABA in neocortical and in cerebellar cultures, but the cellular content of GABA was considerably higher in the neocortical neurons. The cellular content of alanine was similar regardless of culture type. Comparing the amount of labeling, however, cerebellar neurons exhibited a higher capacity for alanine synthesis. This is compatible with the fact that cerebellar neurons could ameliorate a low alanine content after culturing in low glucose (12 mM) by a 4-hr incubation in medium containing 3 mM glucose. A low glucose concentration during the culture period and a subsequent medium change were associated with decreases in glutathione and taurine contents. Moreover, glutamate and GABA contents were reduced in cerebellar cultures under either of these conditions. In neocortical neurons, the GABA content was decreased by simultaneous exposure to low glucose and change of medium. These conditions also led to an increase in the aspartate content in both types of cultures, although most pronounced in the neocortical neurons. Further experiments are needed to elucidate these phenomena that underline the impact of extracellular environment on amino acid homeostasis.

摘要

神经元功能受到细胞外环境的高度影响。为了研究细胞外环境对小脑和新皮质神经元的作用,将来自这些脑区的细胞在不同条件下进行培养。两组培养物,一组是新皮质神经元,一组是小脑神经元,分别在含有[U-(13)C]葡萄糖的培养基中,以初始浓度12 mM和28 mM葡萄糖培养8天。其他几组培养物(体外培养8天)最初在含有12 mM葡萄糖的培养基中培养,随后通过向培养基中添加[U-(13)C]葡萄糖(终浓度3 mM)或更换为含有[U-(13)C]葡萄糖(3 mM)但不含谷氨酰胺和胎牛血清的新鲜培养基,再孵育4小时。(13)C核磁共振(NMR)光谱显示,在含有[U-(13)C]葡萄糖的培养基中培养8天后,培养的新皮质和小脑神经元中均有大量γ-氨基丁酸(GABA)合成,而在这些光谱中未观察到天冬氨酸标记。然而,质谱分析显示天冬氨酸的标记强度很高,在两种类型的神经元中是相同的。在培养第8天添加[U-(13)C]葡萄糖(4小时)导致新皮质和小脑培养物中GABA的标记程度相似,但新皮质神经元中GABA的细胞含量明显更高。无论培养类型如何,丙氨酸的细胞含量相似。然而,比较标记量,小脑神经元表现出更高的丙氨酸合成能力。这与以下事实相符:小脑神经元在低葡萄糖(12 mM)中培养后,通过在含有3 mM葡萄糖的培养基中孵育4小时,可以改善低丙氨酸含量。培养期间的低葡萄糖浓度和随后的培养基更换与谷胱甘肽和牛磺酸含量的降低有关。此外,在这两种条件下,小脑培养物中的谷氨酸和GABA含量均降低。在新皮质神经元中,同时暴露于低葡萄糖和更换培养基会导致GABA含量降低。这些条件还导致两种类型培养物中天冬氨酸含量增加,尽管在新皮质神经元中最为明显。需要进一步的实验来阐明这些现象,这些现象强调了细胞外环境对氨基酸稳态的影响。

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