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Oxidative stress markers and phosphorus magnetic resonance spectroscopy in a patient with GLUT1 deficiency treated with modified Atkins diet

机译:改良Atkins饮食治疗GLUT1缺乏症患者的氧化应激标志物和磷磁共振波谱

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Glucose transporter type 1 deficiency syndrome is an inborn error of glucose transport across blood-tissue barriers, and the modified Atkins diet is an effective and well-tolerated treatment. To investigate the effects of the modified Atkins diet, we examined the cerebrospinal fluid markers and performed phosphorus magnetic resonance spectroscopy in a patient with glucose transporter type 1 deficiency syndrome before and after the modified Atkins diet. Cerebrospinal fluid levels of the oxidative stress markers, 8-hydroxy-2'-deoxyguanosine and hexanoyl-lysine adduct, were markedly increased above the cutoff index and were normalized 18. months after the modified Atkins diet. Phosphorus magnetic resonance spectroscopy measurements showed 18% increase of PCr/γ-ATP ratio after the modified Atkins diet. These results suggest that the modified Atkins diet may reduce oxidative stress in the brain and improve energy reserve capacity, which is important in sustaining electrophysiological activities essential for performing brain functions.
机译:1型葡萄糖转运蛋白缺乏症是先天性错误,即葡萄糖穿过血统屏障的转运,改良的Atkins饮食是一种有效且耐受良好的治疗方法。为了研究改良的阿特金斯饮食的效果,我们检查了改良的阿特金斯饮食前后脑脊液标记物并进行了1型葡萄糖转运蛋白缺乏症患者的磷磁共振波谱分析。改良的Atkins饮食后18个月,脑脊液中的氧化应激指标,8-羟基-2'-脱氧鸟苷和己酰基-赖氨酸加合物的含量明显增加,并高于正常值。磷磁共振波谱测量显示,改良的阿特金斯饮食后PCr /γ-ATP比增加18%。这些结果表明,改良的阿特金斯饮食可以减轻大脑中的氧化应激并提高能量储备能力,这对于维持执行大脑功能必不可少的电生理活动至关重要。

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