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Adult-onset hypothyroidism and the cerebral metabolism of (1,2-13C2) acetate as detected by 13C nuclear magnetic resonance

机译:通过13C核磁共振检测成人发作性甲状腺功能减退症和(1,2-13C2)乙酸盐的脑代谢

摘要

The effects of adult-onset hypothyroidism on the metabolic compartmentation of the cerebral tricarboxylic acid cycle and the gamma-aminobutyric acid (GABA) shunt have been investigated by 13C nuclear magnetic resonance spectroscopy. Rats thyroidectomized as adults and age-matched controls were infused in the right jugular vein with unlabeled or (1,2-13C2) acetate solutions for 60 min. At the end of the infusion, the brains were frozen in situ and perchloric acid extracts were prepared and analyzed by 13C nuclear magnetic resonance and reverse-phase HPLC. Thyroidectomized animals showed a decrease in the incorporation of 13C from (1,2-13C2) acetate in cerebral metabolites and an increase in the concentrations of unlabeled glutamate and GABA. Computer-assisted interpretation of the 13C multiplets observed for the carbons of glutamate, glutamine, and GABA indicated that adult-onset hypothyroidism produced 1) a decrease in the contribution of infused (1,2-13C2) acetate to the glial tricarboxylic acid cycle; 2) an increase in the contribution of unlabeled acetyl-CoA to the neuronal tricarboxylic acid cycle; and 3) impairments in the exchange of glutamate, glutamine, and GABA between the neuronal and glial compartments. Despite the fact that the adult brain has often been considered metabolically unresponsive to thyroid hormone status, present results show metabolic alterations in the neuronal and glial compartments that are reversible with substitution therapy.
机译:已通过13 C核磁共振波谱研究了成年甲状腺功能减退症对大脑三羧酸循环的代谢区室和γ-氨基丁酸(GABA)分流的影响。将成年甲状腺切除的大鼠和年龄相匹配的对照组在右颈静脉内注入未标记的或(1,2-13C2)醋酸盐溶液60分钟。输注结束后,将大脑原位冷冻,制备高氯酸提取物,并通过13 C核磁共振和反相HPLC分析。甲状腺切除的动物大脑中代谢产物中乙酸(1,2-13C2)的13C掺入量减少,未标记的谷氨酸和GABA浓度增加。对谷氨酸,谷氨酰胺和GABA的碳原子的13C多重态的计算机辅助解释表明,成人发作的甲状腺功能减退症产生的原因包括:1)注入的(1,2-13C2)乙酸盐对神经胶质三羧酸循环的贡献降低; 2)未标记的乙酰辅酶A对神经元三羧酸循环的贡献增加; 3)神经元和神经胶质区室之间谷氨酸,谷氨酰胺和GABA的交换受到损害。尽管通常认为成年大脑对甲状腺激素状态没有代谢反应,但目前的结果表明,替代疗法可逆转神经元和神经胶质区室的代谢变化。

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