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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Metabolism of acetyl-L-carnitine for energy and neurotransmitter synthesis in the immature rat brain.
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Metabolism of acetyl-L-carnitine for energy and neurotransmitter synthesis in the immature rat brain.

机译:乙酰-L-肉碱的代谢,用于未成熟大鼠大脑中的能量和神经递质合成。

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摘要

Acetyl-L-carnitine (ALCAR) is an endogenous metabolic intermediate that facilitates the influx and efflux of acetyl groups across the mitochondrial inner membrane. Exogenously administered ALCAR has been used as a nutritional supplement and also as an experimental drug with reported neuroprotective properties and effects on brain metabolism. The aim of this study was to determine oxidative metabolism of ALCAR in the immature rat forebrain. Metabolism was studied in 21-22 day-old rat brain at 15, 60 and 120 min after an intraperitoneal injection of [2-(13)C]acetyl-L-carnitine. The amount, pattern, and fractional enrichment of (13)C-labeled metabolites were determined by ex vivo(13)C-NMR spectroscopy. Metabolism of the acetyl moiety from [2-(13)C]ALCAR via the tricarboxylic acid cycle led to incorporation of label into the C4, C3 and C2 positions of glutamate (GLU), glutamine (GLN) and GABA. Labeling patterns indicated that [2-(13)C]ALCAR was metabolized by both neurons and glia; however, the percent enrichment was higher in GLN and GABA than in GLU, demonstrating high metabolism in astrocytes and GABAergic neurons. Incorporation of label into the C3 position of alanine, both C3 and C2 positions of lactate, and the C1 and C5 positions of glutamate and glutamine demonstrated that [2-(13)C]ALCAR was actively metabolized via the pyruvate recycling pathway. The enrichment of metabolites with (13)C from metabolism of ALCAR was highest in alanine C3 (11%) and lactate C3 (10%), with considerable enrichment in GABA C4 (8%), GLN C3 (approximately 4%) and GLN C5 (5%). Overall, our (13)C-NMR studies reveal that the acetyl moiety of ALCAR is metabolized for energy in both astrocytes and neurons and the label incorporated into the neurotransmitters glutamate and GABA. Cycling ratios showed prolonged cycling of carbon from the acetyl moiety of ALCAR in the tricarboxylic acid cycle. Labeling of compounds formed from metabolism of [2-(13)C]ALCAR via the pyruvate recycling pathway was higher than values reported for other precursors and may reflect high activity of this pathway in the developing brain. This is, to our knowledge, the first study to determine the extent and pathways of ALCAR metabolism for energy and neurotransmitter biosynthesis in the brain.
机译:乙酰基左旋肉碱(ALCAR)是一种内源性代谢中间体,可促进乙酰基基团穿过线粒体内膜的流入和流出。外源施用的ALCAR已被用作营养补充剂,也被用作具有报道的神经保护特性和对脑代谢有影响的实验药物。这项研究的目的是确定未成熟大鼠前脑中ALCAR的氧化代谢。在腹腔注射[2-(13)C]乙酰基-L-肉碱后15、60和120分钟,研究了21-22日龄大鼠大脑的代谢。通过离体(13)C-NMR光谱确定(13)C标记的代谢物的量,模式和富集分数。经由三羧酸循环从[2-(13)C] ALCAR乙酰基部分的代谢导致将标记物掺入谷氨酸(GLU),谷氨酰胺(GLN)和GABA的C4,C3和C2位置。标记模式表明[2-(13)C] ALCAR被神经元和神经胶质代谢;然而,GLN和GABA的富集百分比高于GLU,表明星形胶质细胞和GABA能神经元具有高新陈代谢。将标记物掺入丙氨酸的C3位置,乳酸的C3和C2位置以及谷氨酸和谷氨酰胺的C1和C5位置均表明[2-(13)C] ALCAR通过丙酮酸循环途径被积极代谢。丙氨酸C3(11%)和乳酸盐C3(10%)中来自ALCAR代谢的代谢产物中富含(13)C的含量最高,其中GABA C4(8%),GLN C3(约4%)和GLN的富集程度最高。 C5(5%)。总体而言,我们的(13)C-NMR研究表明,ALCAR的乙酰基部分在星形胶质细胞和神经元中都被代谢为能量,并且标记被掺入了神经递质谷氨酸和GABA中。循环比表明在三羧酸循环中,来自ALCAR的乙酰基部分的碳循环延长。由丙酮酸循环途径由[2-(13)C] ALCAR代谢形成的化合物的标记值高于其他前体报道的值,并且可能反映了该途径在发育中的大脑中的高活性。据我们所知,这是确定脑中能量和神经递质生物合成中ALCAR代谢程度和途径的第一项研究。

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