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Omega-3 fatty acid supplementation can prevent changes in mitochondrial energy metabolism and oxidative stress caused by chronic administration of L-tyrosine in the brain of rats

机译:Omega-3脂肪酸补充可以防止大鼠脑中慢性蛋白慢性施用L-酪氨酸的线粒体能量代谢和氧化应激的变化

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Deficiency of hepatic enzyme tyrosine aminotransferase characterizes the innate error of autosomal recessive disease Tyrosinemia Type II. Patients may develop neurological and developmental difficulties due to high levels of the amino acid tyrosine in the body. Mechanisms underlying the neurological dysfunction in patients are poorly known. Importantly, Tyrosinemia patients have deficient Omega-3 fatty acids (n-3 PUFA). Here, we investigated the possible neuroprotective effect of the treatment with n-3 PUFA in the alterations caused by chronic administration of L-tyrosine on important parameters of energetic metabolism and oxidative stress in the hippocampus, striatum and cerebral cortex of developing rats. Chronic administration of L-tyrosine causes a decrease in the citrate synthase (CS) activity in the hippocampus and cerebral cortex, as well as in the succinate dehydrogenase (SDH) and isocitrate dehydrogenase (IDH) activities, and an increase in the alpha-ketoglutarate dehydrogenase activity in the hippocampus. Moreover, in the striatum, L-tyrosine administration caused a decrease in the activities of CS, SDH, creatine kinase, and complexes I, II-III and IV of the mitochondrial respiratory chain. We also observed that the high levels of L-tyrosine are related to oxidative stress in the brain. Notably, supplementation of n-3 PUFA prevented the majority of the modifications caused by the chronic administration of L-tyrosine in the cerebral enzyme activities, as well as ameliorated the oxidative stress in the brain regions of rats. These results indicate a possible neuroprotective and antioxidant role for n-3 PUFA and may represent a new therapeutic approach and potential adjuvant therapy to Tyrosinemia Type II individuals.
机译:肝酶酪氨酸氨基转移酶的缺乏表征术语II型旋转皂症的先天误差。由于身体中的高水平氨基酸酪氨酸,患者可能会出现神经系统和发育困难。患者神经功能功能障碍的机制尚不清楚。重要的是,酪氨酸血症患者缺乏ω-3脂肪酸(N-3 PUFA)。在这里,我们研究了在L-酪氨酸慢性施用L-酪氨酸的慢性施用引起的改变方面对高能量代谢和氧化胁迫在海马,纹状体和脑皮层的重要参数引起的改变中可能的神经保护作用。 L-酪氨酸的慢性施用导致海马和脑皮质中的柠檬酸盐合酶(CS)活性降低,以及琥珀酸脱氢酶(SDH)和异柠檬酸脱氢酶(IDH)活性,以及​​α-酮戊酸的增加海马脱氢酶活性。此外,在纹状体中,L-酪氨酸给药导致CS,SDH,肌酸激酶和线粒体呼吸链的复合物I,II-III和IV的活性降低。我们还观察到,高水平的L-酪氨酸与大脑中的氧化应激有关。值得注意的是,补充N-3 PUFA,阻止了大部分L-酪氨酸在脑酶活性中引起的大部分修饰,以及大鼠脑区域中的氧化应激。这些结果表明,对于N-3 PUFA可能的神经保护和抗氧化作用,并且可以代表新的治疗方法和对酪氨酸II型个体的潜在佐剂治疗。

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