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首页> 外文期刊>Brain pathology >High-dose biotin restores redox balance, energy and lipid homeostasis, and axonal health in a model of adrenoleukodystrophy
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High-dose biotin restores redox balance, energy and lipid homeostasis, and axonal health in a model of adrenoleukodystrophy

机译:高剂量生物素恢复氧化还原平衡,能量和脂质稳态,以及肾上腺胁迫模型中的轴突健康

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Biotin is an essential cofactor for carboxylases that regulates the energy metabolism. Recently, high-dose pharmaceutical-grade biotin (MD1003) was shown to improve clinical parameters in a subset of patients with chronic progressive multiple sclerosis. To gain insight into the mechanisms of action, we investigated the efficacy of high-dose biotin in a genetic model of chronic axonopathy caused by oxidative damage and bioenergetic failure, theAbcd1(-)mouse model of adrenomyeloneuropathy. High-dose biotin restored redox homeostasis driven by NRF-2, mitochondria biogenesis and ATP levels, and reversed axonal demise and locomotor impairment. Moreover, we uncovered a concerted dysregulation of the transcriptional program for lipid synthesis and degradation in the spinal cord likely driven by aberrant SREBP-1c/mTORC1signaling. This resulted in increased triglyceride levels and lipid droplets in motor neurons. High-dose biotin normalized the hyperactivation of mTORC1, thus restoring lipid homeostasis. These results shed light into the mechanism of action of high-dose biotin of relevance for neurodegenerative and metabolic disorders.
机译:生物素是用于调节能量代谢的羧酸酶的必需辅因子。最近,显示高剂量药物级生物素(MD1003),以改善慢性逐渐多发性硬化症患者患者的临床参数。要深入了解行动机制,我们研究了高剂量生物素在肾上腺素病症的氧化损伤和生物生​​物生物植物衰竭引起的慢性轴突病变遗传模型中的疗效。高剂量生物素被NRF-2,线粒体生物发生和ATP水平驱动的氧化还原稳态,以及逆转的轴突消亡和运动障碍。此外,我们发现了由异常Sreb-1C / MTORC1Signaling驱动的脊髓脂质合成和降解的转录程序的一致性失调。这导致运动神经元的甘油三酯水平和脂液滴增加。高剂量生物素标准化MTORC1的血管活化,从而恢复脂质稳态。这些结果揭示了高剂量生物素的相关性与神经变性和代谢障碍的作用机制。

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