首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Lactic acidosis stimulates ganglioside and ceramide generation without sphingomyelin hydrolysis in rat cortical astrocytes.
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Lactic acidosis stimulates ganglioside and ceramide generation without sphingomyelin hydrolysis in rat cortical astrocytes.

机译:乳酸性酸中毒刺激了大鼠皮质星形胶质细胞中神经节苷脂和神经酰胺的生成,而鞘磷脂却没有水解。

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摘要

Acidosis is a ubiquitous feature of cerebral ischemia, and triggers a cascade of biochemical events that results in neuronal injury. The purpose of this study was to evaluate the effects of lactic acidosis on the ganglioside composition, the ceramide and sphingomyelin (SM) levels in rat cortical astrocytes. Primary astrocyte cultures were exposed to lactic acid (pH 5.5) for 2, 5 and 17 h, and cell death was evaluated at each time point. Gangliosides, ceramides and SM were analyzed by high-performance thin layer chromatography. Lactic acidosis caused a progressive increase of both GM3 and GD3 gangliosides up to 5 h of treatment. However, at 17 h of acidosis, GM3 tented to return to the normal level whereas GD3 accumulated. Additionally, ceramides were gradually generated, whereas no significant decrease of SM occured for 17 h of acidosis. These results suggest that ceramides were not produced by the breakdown of SM and may be served as metabolic precursor for the biosynthesis of GM3 and GD3. Since theselipids are important messengers of the adaptative responses to stress, accumulation of sphingolipids triggered by lactic acid exposure of astrocytes might play an important role in determining the outcomes of injurious processes.
机译:酸中毒是脑缺血的普遍特征,并引发一系列生化事件,导致神经元损伤。这项研究的目的是评估乳酸酸中毒对大鼠皮质星形胶质细胞中神经节苷脂组成,神经酰胺和鞘磷脂(SM)水平的影响。将原代星形胶质细胞培养物暴露于乳酸(pH 5.5)2、5和17 h,并在每个时间点评估细胞死亡。用高效薄层色谱法分析神经节苷脂,神经酰胺和SM。乳酸酸中毒导致GM3和GD3神经节苷脂在治疗5小时内逐渐增加。然而,在酸中毒的第17小时,GM3趋于恢复正常水平,而GD3却积累了下来。此外,神经酰胺逐渐生成,而酸中毒17小时内SM并未显着降低。这些结果表明,神经酰胺不是由SM分解产生的,可以作为GM3和GD3的生物合成的代谢前体。由于这些脂质是应激适应反应的重要信使,因此星形胶质细胞的乳酸暴露引起的鞘脂积聚可能在确定伤害性过程的结果中起重要作用。

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