Department of Anatomy, School of Biomedical Sciences, Brain Health Research Centre, University of Otago, Dunedin, New Zealand.
School of Pharmacy, Brain Health Research Centre, University of Otago, Dunedin, New Zealand.
Amino Acids. 2021 Sep;53(9):1441-1454. doi: 10.1007/s00726-021-03040-5. Epub 2021 Jul 10.
L-arginine is a versatile amino acid with a number of bioactive metabolites. Increasing evidence implicates altered arginine metabolism in the aging and neurodegenerative processes. The present study, for the first time, determined the effects of sex and estrous cycle on the brain and blood (plasma) arginine metabolic profile in naïve rats. Female rats displayed significantly lower levels of L-arginine in the frontal cortex and three sub-regions of the hippocampus when compared to male rats. Moreover, female rats had significantly higher levels of L-arginine and γ-aminobutyric acid, but lower levels of L-ornithine, agmatine and putrescine, in plasma relative to male rats. The observed sex difference in brain L-arginine appeared to be independent of the enzymes involved in its metabolism, de novo synthesis and blood-to-brain transport (cationic acid transporter 1 protein expression at least), as well as circulating L-arginine. While the estrous cycle did not affect L-arginine and its metabolites in the brain, there were estrous cycle phase-dependent changes in plasma L-arginine. These findings demonstrate the sex difference in brain L-arginine in the estrous cycle-independent manner. Since peripheral blood has been increasingly used to identify biomarkers of brain pathology, the influences of sex and estrous cycle on blood arginine metabolic profile need attention when experimental research involves female rodents.
精氨酸是一种多功能氨基酸,具有多种生物活性代谢物。越来越多的证据表明,精氨酸代谢的改变与衰老和神经退行性过程有关。本研究首次测定了性和发情周期对新生大鼠大脑和血液(血浆)精氨酸代谢谱的影响。与雄性大鼠相比,雌性大鼠前额皮质和海马体三个亚区的 L-精氨酸水平明显较低。此外,与雄性大鼠相比,雌性大鼠血浆中 L-精氨酸和γ-氨基丁酸水平明显较高,而 L-鸟氨酸、胍丁胺和腐胺水平明显较低。大脑 L-精氨酸的这种观察到的性别差异似乎与参与其代谢、从头合成和血脑转运的酶(至少阳离子氨基酸转运蛋白 1 表达)以及循环 L-精氨酸无关。虽然发情周期不影响大脑中的 L-精氨酸及其代谢物,但血浆 L-精氨酸存在发情周期相依赖性变化。这些发现表明,发情周期独立于大脑中 L-精氨酸的性别差异。由于外周血液已越来越多地用于鉴定脑病理学的生物标志物,因此在涉及雌性啮齿动物的实验研究中,需要注意性别和发情周期对血液精氨酸代谢谱的影响。